[go: up one dir, main page]

WO2020088523A1 - Procédé d'attribution de ressources et station de base - Google Patents

Procédé d'attribution de ressources et station de base Download PDF

Info

Publication number
WO2020088523A1
WO2020088523A1 PCT/CN2019/114341 CN2019114341W WO2020088523A1 WO 2020088523 A1 WO2020088523 A1 WO 2020088523A1 CN 2019114341 W CN2019114341 W CN 2019114341W WO 2020088523 A1 WO2020088523 A1 WO 2020088523A1
Authority
WO
WIPO (PCT)
Prior art keywords
resource pool
resource
base station
information
scheduled
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2019/114341
Other languages
English (en)
Chinese (zh)
Inventor
林琳
郑方政
赵锐
马腾
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
China Academy of Telecommunications Technology CATT
Original Assignee
China Academy of Telecommunications Technology CATT
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by China Academy of Telecommunications Technology CATT filed Critical China Academy of Telecommunications Technology CATT
Publication of WO2020088523A1 publication Critical patent/WO2020088523A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Images

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/21Control channels or signalling for resource management in the uplink direction of a wireless link, i.e. towards the network
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/23Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/27Control channels or signalling for resource management between access points

Definitions

  • the present disclosure relates to the field of communication technologies, and in particular, to a resource allocation method and a base station.
  • LTE-V2X Long Term Evolution and Vehicle to X
  • PC5 air interface
  • Mode 3 network centralized control mode
  • Mode 4 distributed control mode
  • V2X communication shares a carrier with cellular communication, or uses a dedicated carrier.
  • the V2X communication node determines whether the node uses Mode 3 or Mode 4 according to the configuration information in the received signaling.
  • the specific signaling includes the system information block 21 (System Information Block21 (referred to as SIB21) and Radio Resource Control (Radio Resource Control, referred to as RRC) reconfiguration message.
  • SIB21 System Information Block21
  • RRC Radio Resource Control
  • the UE may report a message to inform the base station of the following information: including geographic location information of latitude and longitude, service transmission period, maximum size of service package, service priority and other information.
  • the base station (eNB) is a V2X communication node that communicates on the PC5 port through DCI Format 5A to notify the V2X communication node sidelink of the resources required to transmit control information and data information.
  • NR Uu has also completed standardization in 3GPP, but the standardization of NR sidelink supporting NR V2X has not yet begun. Mobile communication is updated faster, and operators are also accelerating the construction of NR-Uu related infrastructure. In the future, NR Uu will gradually expand its coverage from hot spot coverage, and will gradually replace LTE after coexisting with LTE cellular networks for a period of time Cellular network. Among them, the development and replacement of automobile and road infrastructure is much slower than the rapid change of mobile communication. The pre-installed vehicle-mounted terminals and roadside terminals that support LTE sidelink appearing on the market will exist before the vehicle is scrapped or the roadside equipment is scrapped.
  • terminals that only support LTE sidelink may also support NR Uu.
  • NR sidelink completes the standardization and formation of products, in order to interconnect with the terminal that only supported LTE sidelink in the early stage, it is necessary to support both NR sidelink and LTE sidelink at the same time. Only after the terminal that only supports LTE sidelink completely disappears can you only do NR sidelink communication .
  • the intermediate transition period may be relatively long.
  • LTE sidelink mode 3 UE can be scheduled by both LTE network and NR network. If a part of LTE sidelink mode 3 UE accepts LTE network scheduling and another part of LTE sidelink mode 3 UE accepts NR network scheduling, there may be eNB and gNBA LTE sidelink mode 3 resources are allocated to different UEs, resulting in unreasonable resource allocation, which in turn reduces data transmission efficiency.
  • the present disclosure provides a resource allocation method and a base station, which solves the problem of unreasonable resource allocation in the related art that leads to a reduction in data transmission efficiency.
  • the present disclosure provides a resource allocation method applied to a first base station.
  • the method includes:
  • the present disclosure also provides a resource allocation method, which is applied to a second base station, and the method includes:
  • a second resource pool that can be scheduled by the second base station is determined according to the resource indication information, where the second resource pool does not conflict with the first resource pool that can be scheduled by the first base station.
  • the present disclosure also provides a resource allocation method, which is applied to a first base station, and the method includes:
  • the present disclosure also provides a resource allocation method, which is applied to a second base station, and the method includes:
  • the fourth resource does not conflict with the allocated third resource.
  • the present disclosure also provides a base station, including:
  • a first sending module configured to send resource indication information to a second base station, where the resource indication information is used to determine a second resource pool that can be scheduled by the second base station, wherein the second resource pool and the first The first resource pool that can be scheduled by the base station does not conflict.
  • the present disclosure also provides a base station, including:
  • a first receiving module configured to receive resource indication information sent by the first base station
  • the resource determination module is configured to determine a second resource pool that can be scheduled by the second base station according to the resource indication information, where the second resource pool does not conflict with the first resource pool that can be scheduled by the first base station.
  • the present disclosure also provides a base station, including:
  • a second receiving module configured to receive resource application information sent by the target user equipment
  • a resource acquisition module configured to acquire a fourth resource allocated to the target user equipment, wherein the fourth resource does not conflict with the allocated third resource
  • a second sending module configured to send the information of the fourth resource to the target user equipment, or send the information of the fourth resource to a second base station, so that the second base station sends the fourth resource The information is sent to the target user equipment.
  • the present disclosure also provides a base station, including:
  • the information acquisition module is used to acquire information of the fourth resource
  • a third sending module configured to send the information of the fourth resource to the target user equipment
  • the fourth resource does not conflict with the allocated third resource.
  • the present disclosure also provides a base station including a first transceiver, a first memory, a first processor, and a program stored on the first memory and executable on the first processor, the first transceiver is used for :
  • the present disclosure also provides a base station including a second transceiver, a second memory, a second processor, and a program stored on the second memory and executable on the second processor.
  • the second transceiver is used for : Receiving resource indication information sent by the first base station;
  • the second processor is configured to: according to the resource indication information, determine a second resource pool that the second base station can schedule, where the second resource pool and the first resource pool that the first base station can schedule are not conflict.
  • the present disclosure also provides a base station, including a third transceiver, a third memory, a third processor, and a program stored on the third memory and executable on the third processor,
  • the third transceiver is used to: receive resource indication information sent by the first base station;
  • the third processor is configured to: according to the resource indication information, determine a second resource pool that the second base station can schedule, where the second resource pool and the first resource pool that the first base station can schedule are not conflict.
  • the present disclosure also provides a base station, including a fourth transceiver, a fourth memory, a fourth processor, and a program stored on the fourth memory and executable on the fourth processor,
  • the fourth transceiver is used to: receive resource application information sent by the target user equipment;
  • the fourth processor is configured to: obtain a fourth resource allocated to the target user equipment, wherein the fourth resource does not conflict with the allocated third resource;
  • the fourth transceiver is further configured to: send the information of the fourth resource to the target user equipment, or send the information of the fourth resource to a second base station, so that the second base station sends the The information of the fourth resource is sent to the target user equipment.
  • the present disclosure also provides a computer-readable storage medium on which a computer program is stored.
  • a computer program is stored on which a computer program is stored.
  • the steps of the resource allocation method described above are implemented.
  • a resource pool that can be scheduled and that does not conflict with each other is selected for the first base station and the second base station, and a reasonable allocation of resources is realized, thereby improving the data transmission efficiency. Therefore, according to the present disclosure, through interaction between base stations, resources can be better scheduled, resource conflicts can be avoided, resource utilization can be improved, and system performance can be improved.
  • FIG. 1 shows a flowchart of a resource allocation method according to some embodiments of the present disclosure
  • FIG. 2 shows a flowchart of a resource allocation method according to some embodiments of the present disclosure
  • FIG. 3 shows a flowchart of a resource allocation method according to some embodiments of the present disclosure
  • FIG. 4 shows a flowchart of a resource allocation method according to some embodiments of the present disclosure
  • FIG. 5 shows a schematic block diagram of a base station according to some embodiments of the present disclosure
  • FIG. 6 shows a schematic block diagram of a base station according to some embodiments of the present disclosure
  • FIG. 7 shows a schematic block diagram of a base station according to some embodiments of the present disclosure.
  • FIG. 8 shows a schematic block diagram of a base station according to some embodiments of the present disclosure
  • FIG. 9 shows a structural block diagram of a base station according to some embodiments of the present disclosure.
  • FIG. 10 shows a structural block diagram of a base station according to some embodiments of the present disclosure.
  • FIG. 11 shows a block diagram of a base station according to some embodiments of the present disclosure.
  • FIG. 12 shows a structural block diagram of a base station according to some embodiments of the present disclosure
  • FIG. 13 shows one of the schematic diagrams in which the resource positions of the first resource pool and the second resource pool do not overlap when selecting the first resource pool from a target resource pool;
  • FIG. 14 is a second schematic diagram showing that the resource positions of the first resource pool and the second resource pool do not overlap when a target resource pool is selected from a target resource pool;
  • 15 is a third schematic diagram showing that the resource positions of the first resource pool and the second resource pool do not overlap when selecting the first resource pool from a target resource pool;
  • 16 is a schematic diagram showing that the time domains of the two target resource pools do not overlap when the first resource pool and the second resource pool are selected;
  • 17 is a schematic diagram showing that the frequency domains of the two target resource pools do not overlap when the first resource pool and the second resource pool are selected;
  • 18 is a schematic diagram showing that the resource positions of the third resource and the fourth resource do not overlap when they are in a target resource pool;
  • 19 is a schematic diagram showing that the third resource and the fourth resource do not overlap in the time domain when they are located in two target resource pools;
  • FIG. 20 is a schematic diagram showing that the third resource and the fourth resource do not overlap in the frequency domain when they are located in two target resource pools.
  • system and “network” are often used interchangeably in this document.
  • B corresponding to A means that B is associated with A, and B can be determined according to A.
  • determining B based on A does not mean determining B based on A alone, and B may also be determined based on A and / or other information.
  • the form of the access network is not limited, and may include a macro base station (Macro Base Station), a micro base station (Pico Base Station), a Node B (3G mobile base station), and an enhanced base station (eNB) , Home enhanced base station (Femto eNB or Home eNode B or Home eNB or HeNB), relay station, access point, RRU (Remote Radio Unit), RRH (Remote Radio Head), etc. Access Network.
  • the user terminal may be a mobile phone (or cell phone), or other devices capable of sending or receiving wireless signals, including user equipment, personal digital assistants (PDAs), wireless modems, wireless communication devices, handheld devices, laptop computers, cordless phones , Wireless local loop (WLL) station, CPE (Customer Premise Equipment) capable of converting mobile signals to WiFi signals, or mobile smart hotspots, smart appliances, or other devices that can communicate with mobile communication networks spontaneously without human operation Equipment etc.
  • PDAs personal digital assistants
  • WLL Wireless local loop
  • CPE Customer Premise Equipment
  • some embodiments of the present disclosure provide a resource allocation method, which solves the problem of unreasonable resource allocation in the related art that leads to a reduction in data transmission efficiency.
  • some embodiments of the present disclosure provide a resource allocation method, which is applied to a first base station and specifically includes the following steps:
  • Step 101 Send resource indication information to a second base station, where the resource indication information is used to determine a second resource pool that the second base station can schedule.
  • the second resource pool does not conflict with the first resource pool that the first base station can schedule.
  • the first resource pool is a Uu transmission resource pool or a sidelink transmission resource pool
  • the second resource pool is a Uu transmission resource pool or a sidelink transmission resource pool.
  • Uu transmission refers to transmission through the Uu interface
  • Uu interface refers to the air interface between the terminal and the base station.
  • first base station and the second base station may have the same or different technical characteristics. Specifically, the technical characteristics are as follows:
  • the first base station and the second base station may interact through the X2 interface or Xn interface or S1 interface or NG interface or the interface with the operation management and maintenance entity, therefore, the first base station may use the X2 interface or Xn interface or S1 interface Or an NG interface or an interface with an operation management and maintenance entity to send resource indication information to the second base station.
  • X2 interface is the interface between eNB, eNB and gNB
  • Xn interface is the interface between gNB, NG-eNB and gNB
  • S1 interface is the interface between eNB and packet core network
  • NG interface is the interface between gNB and 5G core network.
  • connection interface between the first base station and the second base station if there is no connection interface between the first base station and the second base station, and it is not considered to realize the interaction between the two through the core network, the connection interface with the first base station and the second base station may exist respectively.
  • the interaction information between the two is forwarded between the three.
  • step 101 it may further include: receiving a resource configuration request sent by the second base station.
  • step 101 it may further include: receiving resource indication confirmation information sent by the second base station.
  • first resource pool and the second resource pool do not conflict include: when the first resource pool and the second resource pool are in the same target resource pool, the resource positions do not overlap, and the first resource pool and the second resource pool are located in two In different target resource pools, the time and time domains do not overlap or the frequency domain does not overlap.
  • the mutual interference between the resource pools that can be scheduled by the two base stations can be reduced, thereby improving data transmission efficiency.
  • the mutual interference between the resource pools that can be scheduled by these two base stations can be reduced, thereby improving data Transmission efficiency.
  • the frequency interval between the first resource pool and the second resource pool is greater than a first preset threshold, Further reduce the interference between the first resource pool and the second resource pool.
  • the time slot interval between the first resource pool and the second resource pool is greater than a second preset threshold, whereby, the interference between the first resource pool and the second resource pool is further reduced.
  • the resource allocation method of some embodiments of the present disclosure may be implemented as follows:
  • step 101 includes:
  • step 101 includes:
  • step 101 it also includes:
  • Step 101 includes:
  • a first resource pool that can be scheduled by the first base station is selected from the first target resource pool, and a resource location that can be scheduled by the second base station and that is related to the first resource pool is selected Non-overlapping second resource pool;
  • step 101 includes:
  • step 101 it also includes:
  • Step 101 includes:
  • the first reference information and the second allocation principle select a first resource pool that can be scheduled by the first base station in the first target resource pool, and select a resource that can be scheduled by the second base station and A second resource pool where the resource positions of the first resource pool do not overlap;
  • the first resource pool and the second resource pool that can be scheduled by the second base station are selected in the same target resource pool
  • the first resource pool and the second resource pool are in the target resource pool. Examples of distribution are shown in Figures 13-15. It can be seen from FIGS. 13 to 15 that the first resource pool and the second resource pool selected in the same target resource pool may not overlap in the time domain or overlap in the frequency domain.
  • the resource allocation method of some embodiments of the present disclosure may be implemented as follows:
  • step 101 includes:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • step 101 includes:
  • step 101 it also includes:
  • Step 101 includes:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • step 101 includes:
  • step 101 it also includes:
  • Step 101 includes:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • step 101 includes:
  • the fifth allocation principle is used to indicate the selection of a first resource pool that can be scheduled by the first base station in the second target resource pool, Selecting a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • step 101 it also includes:
  • the first resource pool is that the second base station may select the first base station in the second target resource pool according to a predetermined fifth allocation principle Scheduling resource pool;
  • Step 101 includes:
  • step 101 includes:
  • step 101 it also includes:
  • Step 101 includes:
  • the third reference information and the sixth allocation principle select a first resource pool that the first base station can schedule in the second target resource pool, and select the second base station in the third target resource pool A second resource pool that can be scheduled and does not overlap with the first resource pool in the time domain;
  • the resource allocation method of some embodiments of the present disclosure may be implemented as follows:
  • step 101 includes:
  • step 101 includes:
  • step 101 it also includes:
  • Step 101 includes:
  • step 101 includes:
  • step 101 it also includes:
  • Step 101 includes:
  • step 101 includes:
  • the ninth allocation principle is used to indicate the selection of a first resource pool that can be scheduled by the first base station in the second target resource pool, Selecting, from the third target resource pool, a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the frequency domain;
  • step 101 it also includes:
  • the first resource pool is that the second base station may select the first base station in the second target resource pool according to a predetermined ninth allocation principle Scheduling resource pool;
  • Step 101 includes:
  • step 101 includes:
  • a first resource pool that can be scheduled by the first base station, and a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the frequency domain is selected from the third target resource pool;
  • step 101 it also includes:
  • Step 101 includes:
  • the fifth reference information and the tenth allocation principle select a first resource pool that the first base station can schedule in a second target resource pool, and select the second base station in a third target resource pool A second resource pool that can be scheduled and does not overlap with the first resource pool in the frequency domain;
  • the above-mentioned allocation principles for allocating resource pools may be pre-configured, or pre-negotiated by the first base station and the second base station, or suggested by the first base station or the second base station.
  • the above-mentioned reference information may be characteristics of base stations transmitting services on Uu or sidelink and / or UEs in coverage, where the service characteristics include the number of services, the amount of traffic, and priority Level, data packet size, service type, transmission method, whether feedback is required, etc.
  • UE characteristics include number, Release version, geographic location, etc.
  • the case where the first resource pool does not conflict with the second resource pool further includes: when there is an overlap between two target resource pools where the first resource pool and the second resource pool are located, the first resource pool and the second resource pool The resource positions of the resource pools in the overlapping part in the non-overlapping part do not overlap. That is, the overlapping part between the two target resource pools can be regarded as a complete resource pool.
  • the specific method The method of selecting the resource pool that can be scheduled by the first base station and the resource pool that can be scheduled by the second base station in the same target resource pool is the same, and will not be repeated here.
  • some embodiments of the present disclosure provide a resource allocation method, which is applied to a second base station and specifically includes the following steps:
  • Step 201 Receive resource indication information sent by the first base station.
  • Step 202 Determine a second resource pool that can be scheduled by the second base station according to the resource indication information
  • the second resource pool does not conflict with the first resource pool that the first base station can schedule.
  • the first resource pool is a Uu transmission resource pool or a sidelink transmission resource pool
  • the second resource pool is a Uu transmission resource pool or a sidelink transmission resource pool.
  • first base station and the second base station may have the same or different technical characteristics. Specifically, the technical characteristics are as follows:
  • the first base station and the second base station may interact through the X2 interface or Xn interface or S1 interface or NG interface or the interface with the operation management and maintenance entity, therefore, the second base station may use the X2 interface or Xn interface or S1 interface Or an NG interface or an interface with an operation management and maintenance entity, receiving resource indication information sent by the first base station.
  • the information of the fourth resource may be sent to the user equipment through radio resource control RRC signaling or downlink control information DCI signaling.
  • the method before the step of receiving the resource indication information sent by the first base station, the method further includes: sending a resource configuration request to the second base station.
  • the method further includes: sending the resource indication confirmation information to the second base station.
  • the method further includes: selecting a part of the resource pool from the second resource pool as A resource pool scheduled by the second base station.
  • the second base station may further select a part of the resource pool from the second resource pool as a resource pool that can be scheduled.
  • first resource pool and the second resource pool do not conflict include: when the first resource pool and the second resource pool are in the same target resource pool, the resource positions do not overlap, and the first resource pool and the second resource pool are located in two In different target resource pools, the time and time domains do not overlap or the frequency domain does not overlap.
  • the frequency interval between the first resource pool and the second resource pool is greater than a first preset threshold, Further reduce the interference between the first resource pool and the second resource pool.
  • the time slot interval between the first resource pool and the second resource pool is greater than a second preset threshold, whereby, the interference between the first resource pool and the second resource pool is further reduced.
  • the resource allocation method of some embodiments of the present disclosure may be implemented as follows:
  • the resource indication information is information of a first resource pool; the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the resource indication information is information of a second resource pool selected by the first base station from resource pools other than the first resource pool in the first target resource pool, and the second resource pool is determined according to the resource indication information
  • the steps of the second resource pool that the base station can schedule include:
  • the first resource pool is a resource pool that can be scheduled by the first base station selected by the first base station from the first target resource pool.
  • the resource indication information is a predetermined first allocation principle
  • the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • a first resource pool that can be scheduled by the first base station and a first resource pool that can be scheduled by the second base station and that do not overlap with the resource position of the first resource pool are selected from the first target resource pool according to the first allocation principle Two resource pools;
  • the method further includes:
  • the resource indication information is information of a second resource pool, the second resource pool is selected by the first base station from the first target resource pool according to the first allocation principle, and can be scheduled by the second base station And a resource pool that does not overlap with the resource location of the first resource pool, the step of determining the second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the first resource pool is a resource pool that can be scheduled by the first base station selected from the first target resource pool according to the first allocation principle.
  • the resource indication information includes first reference information and a predetermined second allocation principle.
  • the first reference information is information required when allocating a resource pool in the first target resource pool according to the second allocation principle;
  • the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the first reference information and the second allocation principle select a first resource pool that can be scheduled by the first base station in the first target resource pool, and the first resource pool that can be scheduled by the second base station and that is related to the first resource A second resource pool where the resource positions of the pool do not overlap;
  • the method further includes:
  • the resource indication information is information of a second resource pool.
  • the second resource pool is selected by the first base station in the first target resource pool according to the first reference information and the second allocation principle.
  • the resource pool that can be scheduled by the second base station and does not overlap with the resource position of the first resource pool, and the step of determining the second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the first resource pool is a resource pool that can be scheduled by the first base station selected from the first target resource pool according to the first reference information and the first allocation principle.
  • the first resource pool and the second resource pool that can be scheduled by the second base station are selected in the same target resource pool
  • the first resource pool and the second resource pool are in the target resource pool. Examples of distribution are shown in Figures 13-15. It can be known from 13 to 15 that the first resource pool and the second resource pool selected in the same target resource pool may not overlap in the time domain or overlap in the frequency domain.
  • the resource allocation method of some embodiments of the present disclosure may be implemented as follows:
  • the resource indication information is information of a first resource pool; the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the resource indication information is information of a second resource pool.
  • the second resource pool is the second base station selected by the first base station in the third target resource pool according to the time domain information of the first resource pool.
  • a resource pool that is scheduled and does not overlap with the first resource pool in the time domain; the step of determining a second resource pool that the second base station can schedule according to the resource indication information includes:
  • the first resource pool is a resource pool that can be scheduled by the first base station selected by the first base station from the second target resource pool.
  • the resource indication information is a predetermined third allocation principle
  • the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the method further includes:
  • the resource indication information is information of a second resource pool.
  • the second resource pool is selected by the first base station from the third target resource pool according to time domain information of the first resource.
  • the second base station may A resource pool that is scheduled and does not overlap with the first resource pool in the time domain, the first resource pool is selected by the first base station from the second target resource pool according to the third allocation principle
  • a resource pool that can be scheduled by the first base station; the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information includes second reference information and a predetermined fourth allocation principle, and the second reference information is required when allocating resources in the second target resource pool according to the fourth allocation principle Information; the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the method further includes:
  • the resource indication information is information of a second resource pool, the second resource pool is selected by the first base station from a third target resource pool according to time domain information of the first resource pool, and the second base station A resource pool that can be scheduled and does not overlap with the first resource pool in the time domain, where the first resource pool is based on the second reference information and the fourth allocation principle
  • the resource pool that can be scheduled by the first base station selected from the second target resource pool; and the step of determining the second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information is a predetermined fifth allocation principle; and the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the method further includes:
  • the resource indication information is information of a second resource pool, the second resource pool is selected by the first base station in the third target resource pool according to the fifth allocation principle, and the second base station may schedule Resource pool that does not overlap with the first resource pool in the time domain, the first resource pool is the one selected by the first base station from the second target resource pool according to the fifth allocation principle
  • a resource pool that can be scheduled by the first base station; the step of determining the second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the step of receiving resource indication information sent by the first base station includes:
  • the resource indication information includes third reference information and a predetermined sixth allocation principle.
  • the third reference information is information required when allocating a resource pool in the second target resource pool according to the sixth allocation principle;
  • the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the third reference information and the sixth allocation principle select a first resource pool that the first base station can schedule in the second target resource pool, and select a second base station that can be scheduled in the third target resource pool And a second resource pool that does not overlap with the first resource pool in the time domain;
  • the method further includes:
  • the resource indication information is information of a second resource pool, and the second resource pool is selected by the first base station in the third target resource pool according to the third reference information and the sixth allocation principle, A resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain, and the first resource pool is the first base station according to the third reference information and the first Five allocation principles
  • the resource pool that can be scheduled by the first base station selected in the second target resource pool; the step of determining the second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource allocation method of some embodiments of the present disclosure may be implemented as follows:
  • the resource indication information is information of a first resource pool; the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the resource indication information is information of a second resource pool.
  • the second resource pool is the second base station selected by the first base station from the third target resource pool according to the frequency domain information of the first resource pool.
  • a resource pool that is scheduled and does not overlap with the first resource pool in the frequency domain; the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the first resource pool is a resource pool that can be scheduled by the first base station selected by the first base station from the second target resource pool.
  • the resource indication information is a predetermined seventh allocation principle; and the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the method further includes:
  • the resource indication information is information of a second resource pool, the second resource pool is selected by the first base station in the third target resource pool according to frequency domain information of the first resource pool, and the second base station A resource pool that can be scheduled and does not overlap with the first resource pool in the frequency domain, where the first resource pool is selected by the first base station from the second target resource pool according to a predetermined seventh allocation principle
  • the resource pool that the first base station can schedule; the step of determining the second resource pool that the second base station can schedule according to the resource indication information includes:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information includes fourth reference information and a predetermined eighth allocation principle, and the fourth reference information is required when allocating resources in the second target resource pool according to the eighth allocation principle Information; the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the method further includes:
  • the resource indication information is information of a second resource pool, the second resource pool is selected by the first base station in the third target resource pool according to frequency domain information of the first resource pool, and the second base station A resource pool that can be scheduled and does not overlap with the first resource pool in the frequency domain.
  • the first resource pool is the first base station according to the fourth reference information and the eighth allocation principle.
  • a resource pool that can be scheduled by the first base station selected from two target resource pools; and the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information is a predetermined ninth allocation principle; and the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the ninth allocation principle select a first resource pool that can be scheduled by the first base station in the second target resource pool, and select a first resource pool that can be scheduled by the second base station and the first resource in the third target resource pool A second resource pool that does not overlap in the frequency domain;
  • the method further includes:
  • the resource indication information is information of a second resource pool, the second resource pool is selected by the first base station from the third target resource pool according to the ninth allocation principle, and the second base station may schedule Resource pool that does not overlap with the first resource pool in the frequency domain, the first resource pool is the one selected by the first base station from the second target resource pool according to the ninth allocation principle
  • a resource pool that can be scheduled by the first base station; the step of determining the second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the step of receiving resource indication information sent by the first base station includes:
  • the resource indication information includes fifth reference information and a predetermined tenth allocation principle, and the fifth reference information is information required when allocating the resource pool in the second target resource pool according to the tenth allocation principle;
  • the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the fifth reference information and the tenth allocation principle select the first resource pool that the first base station can schedule in the second target resource pool, and select the second base station that can be scheduled in the third target resource pool And a second resource pool that does not overlap with the first resource pool in the frequency domain;
  • the method further includes:
  • the resource indication information is information of a second resource pool, and the second resource pool is selected by the first base station in the third target resource pool according to the fifth reference information and the tenth allocation principle, A resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the frequency domain, where the first resource pool is the first base station according to the fifth reference information and the first Ten allocation principles
  • the resource pool that can be scheduled by the first base station selected in the second target resource pool; the step of determining the second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the above-mentioned allocation principles (first allocation principle to tenth allocation principle) of the allocated resource pool may be pre-configured, or pre-negotiated by the first base station and the second base station, or suggested by the first base station or the second base station .
  • the first target resource pool described in the first embodiment and the second embodiment is a resource pool of LTE sidelink mode 3 or a resource pool of NR sidelink mode 1.
  • NR network link mode 1 can exist in the NR network system; in the LTE network system, both LTE sidelink mode 3 and LTE
  • NR sidelink mode 2 can exist in the NR network system; when NR sidelink mode 1 and NR sidelink mode 2 exist simultaneously in the NR network system, LTE sidelink mode 3 can exist in the LTE network system; in the NR network system
  • LTE sidelink mode 4 may exist in the LTE network system. Therefore, the second target resource pool and the third target resource pool may be specifically combined as follows:
  • the second target resource pool is a resource pool of LTE sidelink mode 3, and the third target resource pool is a resource pool of NR sidelink mode 1; or
  • the second target resource pool is a resource pool of LTE sidelink mode 3, and the third target resource pool is a resource pool of NR sidelink mode 2; or
  • the second target resource pool is the LTE sidelink mode 4 resource pool
  • the third target resource pool is the NR sidelink mode 1 resource pool
  • the second target resource pool is the LTE sidelink mode 4 resource pool
  • the third target resource pool is the NR sidelink mode 2 resource pool.
  • the above resource pool may also be a Uu transmission resource pool, and there are many various combinations, which are not listed here one by one.
  • the first base station is an eNB and the second base station is a gNB
  • a specific implementation manner when performing resource allocation can be exemplified as follows.
  • the eNB and gNB interact so that the LTE sidelink mode 3 resource pools scheduled by the two do not overlap.
  • the specific implementation is as follows:
  • Method 1 The eNB selects the first resource pool that it can schedule in the LTE sidelink mode 3 resource pool and sends it to gNB, so that gNB selects the second resource pool that it schedules in the remaining LTE sidelink mode 3 resource pool; or
  • the eNB selects the first resource pool that it can schedule in the LTE sidelink mode 3 resource pool, and then selects the second resource pool that can be scheduled by gNB from the remaining resource pools in the LTE sidelink mode 3 resource pool, and combines the information of the second resource pool Send to gNB.
  • the LTE sidelink mode 3 resource pool allocation principle is pre-determined. For example, it is divided according to the relative positional relationship of the resource pools, so that the eNB and gNB have odd and even numbers in their respective resource pools. In the resource pool, select the first resource pool that can be scheduled by itself, and send the predetermined allocation principle to gNB, so that gNB selects the second resource pool that can be scheduled in the LTE sidelink mode 3 resource pool according to the allocation principle; or
  • the eNB selects the first resource pool that it can schedule among the LTE sidelink mode 3 resource pools, and selects the second resource pool that gNB can schedule, and then sends the second resource pool to gNB.
  • Method 3 The allocation principle and reference information of the LTE sidelink mode 3 resource pool are pre-determined. For example, according to the number of LTE sidelink mode 3 in the base station coverage and / or the proportion of the service volume, the eNB will divide the LTE sidelink under its own coverage The number of mode3 UEs and / or traffic is sent to gNB, so that gNB can communicate with the number of LTE sidelink modes3 and UE traffic covered by eNB according to the number and / or traffic of LTE sidelink mode3 UEs under its own coverage and / or traffic In the LTE sidelink mode 3 resource pool, select the resource pool that can be scheduled for eNB and gNB; or
  • the eNB receives the number of LTE sidelink mode3 UEs covered by gNB and / or traffic sent to gNB, and then according to the number of LTE sidelink mode3 UEs covered by itself and / or traffic, and the gNB coverage
  • the number of LTE sidelink mode3 UEs and / or the proportion of traffic, in the LTE sidelink mode3 resource pool select the resource pools that can be scheduled for eNB and gNB, so that the resource pool selected for gNB is sent to gNB.
  • a request can be established before the interaction between the eNB and the gNB starts, and the initiator of the request can be any party, and the request can be periodically initiated, or an event triggers the request to be initiated.
  • the initiator of the request can be any party, and the request can be periodically initiated, or an event triggers the request to be initiated.
  • the resource allocation principle and reference information may be pre-configured, pre-negotiated by the two, or suggested by one party.
  • eNB interacts with gNB so that the LTE sidelink resource pool scheduled by the eNB and the NR sidelink resource pool scheduled by gNB do not overlap in the time domain.
  • the specific implementation method is as follows:
  • Method 1 Assuming that the eNB knows the resource pool of LTE sidelink and gNB knows the resource pool of NR sidelink, then the eNB first selects the first resource pool that it can schedule from the resource pool of LTE sidelink, and then the eNB sends the information of the first resource pool To gNB, so that gNB selects from the NR sidelink resource pool a second resource pool that can be scheduled by gNB and that the first resource pool does not overlap in the time domain; or
  • the eNB first selects the first resource pool that it can schedule in the resource pool of LTE sidelink, and then selects the second resource pool that can be scheduled by gNB in the NR sidelink resource pool and does not overlap with the first resource pool in the time domain To send the information of the second resource pool to gNB.
  • Method 2 Assuming that eNB knows the resource pool of LTE sidelink and gNB knows the resource pool of NR sidelink, and pre-determined the allocation principle of selecting the first resource pool for eNB, then eNB selects from the resource pool of LTE sidelink according to the allocation principle The first resource pool that can be scheduled by itself, and then sends the information of the first resource pool to gNB, so that gNB selects gNB in the NR sidelink resource pool according to the time domain information of the first resource and can be scheduled by gNB and the first resource.
  • the eNB sends the allocation principle to gNB, so that the gNB selects the first resource pool that the eNB can schedule in the resource pool of LTE according to the allocation principle, and then in the NR sidelink resource pool according to the time domain information of the first resource pool
  • the gNB selects a second resource pool that can be scheduled by the gNB and does not overlap the time domain of the first resource.
  • Method 3 Assuming that the eNB knows the resource pool of LTE sidelink and gNB knows the resource pool of NR sidelink, and pre-determines the allocation principle of selecting the first resource pool for the eNB and the required reference information, the eNB obtains the required reference information, Then, according to the allocation principle and reference information, select the first resource pool that can be scheduled in the LTE sidelink resource pool, so that according to the time domain information of the first resource, gNB selects the gNB in the NR sidelink resource pool that can be scheduled and A second resource pool that does not overlap the time domain of the first resource; or
  • the eNB obtains the required reference information, and then sends the allocation principle and reference information to gNB, so that gNB selects the first resource pool that the eNB can schedule among the resource pools of LTE according to the allocation principle, and then according to the first resource pool In the NR sidelink resource pool, gNB selects a second resource pool that can be scheduled by gNB and does not overlap with the time domain of the first resource.
  • Method 4 Assuming that the eNB knows the resource pool of LTE sidelink and gNB knows the resource pool of NR sidelink, and the allocation principle is predetermined, for example, the allocation principle stipulates that the respective resource pools of eNB and gNB are odd and even, the eNB directly follows the allocation principle You can select the first resource pool that you can schedule from the resource pool of LTE sidelink, and select the second resource pool that gNB can schedule in gNB in the NR sidelink resource pool according to the allocation principle; or
  • the eNB sends the predetermined allocation principle to gNB. Based on the allocation principle, gNB selects the first resource pool that can be scheduled from the LTE sidelink resource pool, and gNB selects the second resource that can be scheduled by gNB in the NR sidelink resource pool Pool.
  • Method 5 Assuming that eNB knows the resource pool of LTE sidelink and gNB knows the resource pool of NR sidelink, and has determined the allocation principle and required reference information in advance, then eNB obtains the required reference information, and then according to the allocation principle and reference information, Select the first resource pool that can be scheduled from the resource pool of LTE sidelink, and select the second resource pool that can be scheduled by gNB in the NR sidelink resource pool; or
  • the eNB obtains the required reference information, and sends the allocation principle and reference information to gNB, so that gNB selects the first resource pool that eNB can schedule from the resource pool of LTE sidelink, and gNB selects the scheduling resource of gNB in the NR sidelink resource pool The second resource pool.
  • a request can be established before the interaction between the eNB and the gNB starts, and the initiator of the request can be any party, and the request can be periodically initiated, or an event triggers the request to be initiated.
  • the initiator of the request can be any party, and the request can be periodically initiated, or an event triggers the request to be initiated.
  • the resource allocation principle and reference information may be pre-configured, pre-negotiated by the two, or suggested by one party.
  • eNB interacts with gNB so that the LTE sidelink resource pool scheduled by the eNB and the NR sidelink resource pool scheduled by gNB do not overlap in the frequency domain.
  • the specific implementation is as follows:
  • Method 1 Assuming that the eNB knows the resource pool of LTE sidelink and gNB knows the resource pool of NR sidelink, then the eNB first selects the first resource pool that it can schedule from the resource pool of LTE sidelink, and then the eNB sends the information of the first resource pool Giving gNB, so that gNB selects from the NR sidelink resource pool a second resource pool that gNB can schedule and that the first resource pool does not overlap in the frequency domain; or
  • the eNB first selects the first resource pool that it can schedule in the resource pool of LTE sidelink, and then selects the second resource pool that can be scheduled by gNB and does not overlap with the first resource pool in the frequency domain by gNB in the NR sidelink resource pool To send the information of the second resource pool to gNB.
  • Method 2 Assuming that eNB knows the resource pool of LTE sidelink and gNB knows the resource pool of NR sidelink, and pre-determined the allocation principle of selecting the first resource pool for eNB, then eNB selects from the resource pool of LTE sidelink according to the allocation principle The first resource pool that can be scheduled by itself, and then the information of the first resource pool is sent to gNB, so that gNB selects gNB in the NR sidelink resource pool according to the frequency domain information of the first resource and can be scheduled by gNB and the first resource. A second resource pool that does not overlap in the frequency domain; or
  • the eNB sends the allocation principle to gNB, so that the gNB selects the first resource pool that the eNB can schedule in the resource pool of LTE according to the allocation principle, and then in the NR sidelink resource pool according to the frequency domain information of the first resource pool
  • the gNB selects a second resource pool that can be scheduled by the gNB and does not overlap the frequency domain of the first resource.
  • Method 3 Assuming that the eNB knows the resource pool of LTE sidelink and gNB knows the resource pool of NR sidelink, and pre-determines the allocation principle of selecting the first resource pool for the eNB and the required reference information, the eNB obtains the required reference information, Then, according to the allocation principle and reference information, select the first resource pool that can be scheduled in the LTE sidelink resource pool, so that according to the frequency domain information of the first resource, gNB selects the gNB in the NR sidelink resource pool that can be scheduled and A second resource pool that does not overlap the frequency domain of the first resource; or
  • the eNB obtains the required reference information, and then sends the allocation principle and reference information to gNB, so that gNB selects the first resource pool that the eNB can schedule among the resource pools of LTE according to the allocation principle, and then according to the first resource pool In the NR sidelink resource pool, gNB selects a second resource pool that can be scheduled by gNB and does not overlap with the frequency domain of the first resource.
  • Method 4 Assuming that the eNB knows the resource pool of LTE sidelink and gNB knows the resource pool of NR sidelink, and the allocation principle is predetermined, for example, the allocation principle stipulates that the respective resource pools of eNB and gNB are odd and even, the eNB directly follows the allocation principle You can select the first resource pool that you can schedule from the resource pool of LTE sidelink, and select the second resource pool that gNB can schedule in gNB in the NR sidelink resource pool according to the allocation principle; or
  • the eNB sends the predetermined allocation principle to gNB. Based on the allocation principle, gNB selects the first resource pool that can be scheduled from the LTE sidelink resource pool, and gNB selects the second resource that can be scheduled by gNB in the NR sidelink resource pool Pool.
  • Method 5 Assuming that eNB knows the resource pool of LTE sidelink and gNB knows the resource pool of NR sidelink, and has determined the allocation principle and required reference information in advance, then eNB obtains the required reference information, and then according to the allocation principle and reference information, Select the first resource pool that can be scheduled from the resource pool of LTE sidelink, and select the second resource pool that can be scheduled by gNB in the NR sidelink resource pool; or
  • the eNB obtains the required reference information, and sends the allocation principle and reference information to gNB, so that gNB selects the first resource pool that eNB can schedule from the resource pool of LTE sidelink, and gNB selects the scheduling resource of gNB in the NR sidelink resource pool The second resource pool.
  • a request can be established before the interaction between the eNB and the gNB starts, and the initiator of the request can be any party, and the request can be periodically initiated, or an event triggers the request to be initiated.
  • the initiator of the request can be any party, and the request can be periodically initiated, or an event triggers the request to be initiated.
  • the resource allocation principle and reference information may be pre-configured, pre-negotiated by the two, or suggested by one party.
  • the allocation principle or the allocation principle and reference information when selecting the first resource pool that can be scheduled by the first base station and the second resource pool that can be scheduled by the second base station according to the allocation principle or the allocation principle and reference information, it is not limited to firstly according to the allocation principle or the allocation principle and reference Information to select the first resource pool, and then refer to the first resource pool to select the second resource pool, it can also be: first select the second resource pool according to the allocation principle or the allocation principle and reference information, and then select according to the second resource pool The first resource pool; and the first resource pool and the second resource pool are selected at the same time according to the allocation principle and the allocation principle and reference information. That is, the allocation principle or the allocation principle and reference information are not limited to only selecting the first resource pool, and simultaneously selecting the first resource pool and the second resource pool, and may also be used only to select the second resource pool.
  • the above takes the interaction of two base stations as an example, and the interaction between multiple base stations can be regarded as multiple pairwise interactions.
  • the above is an example in which two base stations schedule one resource pool or two resource pools, and the case where two base stations schedule more than two resource pools can be deduced by analogy.
  • the first base station selects the first resource pool that it can schedule in the second target resource pool, selects the third resource pool that it can schedule in the third target resource pool, and selects the second base station in the fourth target resource pool A second resource pool that can be scheduled, where the time domain of the first resource pool and the second resource pool do not overlap, the frequency domain of the first resource pool and the third resource pool do not overlap, and the time of the second resource pool and the third resource pool The domain and frequency domain do not overlap.
  • the first resource pool and the second resource pool selected for the first base station may include a portion where only the time domain does not overlap, a portion where only the frequency domain does not overlap, both the frequency domain and the time domain The parts that do not overlap. That is, in the above first and second embodiments, the specific methods of selecting the first resource pool that the first base station can schedule and the resource pool that the second base station can schedule can be combined with each other.
  • some embodiments of the present disclosure also provide a resource allocation method, which is applied to the first base station and specifically includes the following steps:
  • Step 301 Receive resource application information sent by the target user equipment.
  • Step 302 Acquire a fourth resource allocated to the target user equipment, where the fourth resource does not conflict with the allocated third resource;
  • Step 303 Send the information of the fourth resource to the target user equipment, or send the information of the fourth resource to a second base station, so that the second base station sends the information of the fourth resource to The target user equipment.
  • the first base station and the second base station may have the same or different technical characteristics. Specifically, the technical characteristics are as follows:
  • the resource application information is used to apply for Uu transmission resources or sidelink transmission resources.
  • the step of sending the information of the fourth resource to the user equipment includes: sending the information of the fourth resource to the radio resource control RRC signaling or downlink control information DCI signaling The target user equipment.
  • the step of sending the information of the fourth resource to the second base station includes: through the X2 interface or Xn interface or S1 interface or NG interface or an interface with an operation management and maintenance entity, the fourth The resource information is sent to the second base station.
  • the frequency interval between the third resource and the fourth resource is greater than a third preset threshold, thereby further reducing Interference between the third resource and the fourth resource pool.
  • the time slot interval between the third resource and the fourth resource is greater than a fourth preset threshold, thereby further reducing The interference between the small third resource and the fourth resource pool.
  • the third resource and the fourth resource do not conflict include: when the third resource and the fourth resource are in the same target resource pool, the resource positions do not overlap, and the third resource pool and the fourth resource pool are located at two different targets, respectively.
  • the time and time domains in the resource pool do not overlap or the frequency domain does not overlap.
  • the method further includes: sending relevant information used to guide the user equipment to perform data transmission on the fourth resource to the target User equipment; or send relevant information for instructing user equipment to perform data transmission on the fourth resource to the second base station, so that the second base station forwards to the target user equipment.
  • the relevant information includes: carrier identification (index), modulation mode, priority, bandwidth part index, resource reservation identification, resource reservation period, the number of transmissions, wireless access type type, Sidelink SPS configuration index, SPS resource Activation / release indication, virtual resource block to physical resource block mapping, redundancy version, hybrid automatic repeat request processing number, power control information, rate matching indicator, channel state information, antenna port, transmission feedback information, DMRS information, scheduling One or more of the type of sidelink and reserved bits.
  • carrier identification index
  • modulation mode priority
  • bandwidth part index resource reservation identification
  • resource reservation period the number of transmissions
  • wireless access type type wireless access type
  • Sidelink SPS configuration index Sidelink SPS configuration index
  • SPS resource Activation / release indication virtual resource block to physical resource block mapping, redundancy version, hybrid automatic repeat request processing number, power control information, rate matching indicator, channel state information, antenna port, transmission feedback information, DMRS information, scheduling One or more of the type of sidelink and reserved bits.
  • the resource allocation method of some embodiments of the present disclosure may be implemented as follows:
  • the step of acquiring the fourth resource allocated to the target user equipment includes:
  • the resource allocation method of some embodiments of the present disclosure may be implemented as follows:
  • the step of acquiring the fourth resource allocated to the target user equipment includes:
  • the time domain information of the third resource among the unallocated resources in the sixth target resource pool, select a fourth resource that does not overlap with the third resource in the time domain for the target user equipment;
  • FIG. 19 an example of the distribution of the third resource and the fourth resource in the target resource pool is shown in FIG. 19 .
  • the resource allocation method of some embodiments of the present disclosure may be implemented as follows:
  • the step of acquiring the fourth resource allocated to the target user equipment includes:
  • the frequency domain information of the third resource among the unallocated resources in the sixth target resource pool, select a fourth resource that does not overlap with the third resource in the frequency domain for the target user equipment;
  • Receiving information of the fourth resource sent by the second base station, where the fourth resource is the unallocated resource in the third resource pool of the second base station according to the resource application information is A resource selected by the target user equipment and not overlapping with the third resource in the frequency domain, where the third resource is an allocated resource in a fifth target resource pool acquired by the second base station.
  • the above-mentioned fourth resource selected for the user equipment may also be in the form of a resource set. After receiving the resource pool selected by the base station for the user equipment, the user equipment needs to further schedule resources from this resource pool, for example Select sending resources from the resource pool for yourself and / or other user equipment.
  • some embodiments of the present disclosure also provide a resource allocation method, which is applied to the second base station and specifically includes the following steps:
  • Step 401 Obtain information about the fourth resource.
  • Step 402 Send the information of the fourth resource to the target user equipment.
  • the fourth resource does not conflict with the allocated third resource.
  • the first base station and the second base station may have the same or different technical characteristics. Specifically, the technical characteristics are as follows:
  • the step of acquiring the information of the fourth resource includes: receiving the information of the fourth resource sent by the first base station through an X2 interface or an Xn interface or an S1 interface or an NG interface or an interface with an operation management and maintenance entity.
  • the step of sending the information of the fourth resource to the target user equipment includes: sending the information of the fourth resource to the station through radio resource control RRC signaling or downlink control information DCI signaling Scription user equipment.
  • the method further includes: receiving a message sent by the first base station to guide the user equipment to perform on the fourth resource Relevant information for data transmission; send the relevant information to the target user equipment.
  • the relevant information includes: carrier identification (index), modulation mode, priority, bandwidth part index, resource reservation identification, resource reservation period, the number of transmissions, wireless access type type, Sidelink SPS configuration index, SPS resource Activation / release indication, virtual resource block to physical resource block mapping, redundancy version, hybrid automatic repeat request processing number, power control information, rate matching indicator, channel state information, antenna port, transmission feedback information, DMRS information, scheduling One or more of the type of sidelink and reserved bits.
  • carrier identification index
  • modulation mode priority
  • bandwidth part index resource reservation identification
  • resource reservation period the number of transmissions
  • wireless access type type wireless access type
  • Sidelink SPS configuration index Sidelink SPS configuration index
  • SPS resource Activation / release indication virtual resource block to physical resource block mapping, redundancy version, hybrid automatic repeat request processing number, power control information, rate matching indicator, channel state information, antenna port, transmission feedback information, DMRS information, scheduling One or more of the type of sidelink and reserved bits.
  • the third resource and the fourth resource do not conflict include: when the third resource and the fourth resource are in the same target resource pool, the resource positions do not overlap, and the third resource pool and the fourth resource pool are located at two different targets, respectively.
  • the time and time domains in the resource pool do not overlap or the frequency domain does not overlap.
  • the resources allocated to different user equipments can be located in the same target resource pool or in different target resource pools.
  • the time domain does not overlap or the frequency domain does not overlap, which can reduce the interference between the two and thereby improve the data transmission efficiency.
  • the frequency interval between the third resource and the fourth resource is greater than a third preset threshold, thereby further reducing Interference between the third resource and the fourth resource pool.
  • the time slot interval between the third resource and the fourth resource is greater than a fourth preset threshold, thereby further reducing The interference between the small third resource and the fourth resource pool.
  • the resource allocation method of some embodiments of the present disclosure may be implemented as follows:
  • the fourth resource is a resource selected by the first base station or the second base station for the target user equipment from resources other than the third resource that has been allocated in the fourth target resource pool .
  • the resource allocation method of some embodiments of the present disclosure may be implemented as follows:
  • the fourth resource is the first base station or the second base station. According to the time domain information of the third resource that has been allocated in the fifth target resource pool, it is not found in the sixth target resource pool. Among the allocated resources, resources that are selected for the target user equipment and do not overlap with the third resource in the time domain.
  • FIG. 19 an example of the distribution of the third resource and the fourth resource in the target resource pool is shown in FIG. 19 .
  • the resource allocation method of some embodiments of the present disclosure may be implemented as follows:
  • the fourth resource is the first base station or the second base station. According to frequency domain information of the third resource that has been allocated in the fifth target resource pool, it is not found in the sixth target resource pool. Among the allocated resources, resources that are selected for the target user equipment and do not overlap with the third resource in the frequency domain.
  • the above-mentioned fourth resource selected for the user equipment may also be in the form of a resource set.
  • the user equipment After receiving the resource pool selected by the base station for the user equipment, the user equipment needs to further schedule resources from this resource pool, for example Select sending resources from the resource pool for yourself and / or other user equipment. ,
  • network X receives the resource application information reported by the UE
  • network Y selects resources or resource pools for the UE
  • network Z indicates the selected resources or resource pools to the UE.
  • X, Y, and Z may be as shown in Table 1, respectively.
  • a specific implementation manner may be as follows:
  • Method 1 After the eNB receives the resource application information sent by the LTE sidelink mode 3 UE, the eNB obtains the allocated resources of the LTE sidelink mode 3 resource pool, and then removes the allocated resources in the LTE sidelink mode 3 resource pool Among the resources, select resources for the LTE sidelink mode 3 UE, and indicate the selected resources to the LTE sidelink mode 3 UE.
  • Method 2 After receiving the resource application information sent by the LTE sidelink mode 3 UE, the eNB obtains the time domain information of the allocated resources in the NR sidelink resource pool, and then in the LTE sidelink mode 3 resource pool unallocated resources Select the resource that does not overlap the time domain of the allocated resource in the NR sidelink resource pool, and finally indicate the selected resource to LTE sidelink mode 3 UE.
  • Method 3 After the eNB receives the resource application information sent by the LTE sidelink mode 3 UE, the eNB obtains the frequency domain information of the allocated resources in the NR sidelink resource pool, and then selects the NR sidelink in the LTE sidelink mode 3 resource pool. The resources in the resource pool that have been allocated do not overlap in the frequency domain, and finally indicate the selected resources to LTE sidelink mode 3 UE.
  • Method 1 After the eNB receives the resource application information sent by the LTE sidelink mode 3 UE, the eNB obtains the allocated resources of the LTE sidelink mode 3 resource pool, and then removes the allocated resources in the LTE sidelink mode 3 resource pool Among the resources, a resource is selected for the LTE sidelink mode 3 UE, and the selected resource is sent to the gNB, so that the gNB is indicated to the LTE side link mode 3 UE.
  • Method 2 After the eNB receives the resource application information sent by the LTE sidelink mode 3 UE, the eNB obtains the time domain information of the allocated resources in the NR sidelink resource pool, and then selects the NR sidelink in the LTE sidelink mode 3 resource pool. The resources in the resource pool that have been allocated do not overlap in time domain, and finally send the selected resources to gNB, so that gNBA indicates to LTE sidelink mode 3 UE.
  • Method 3 After the eNB receives the resource application information sent by the LTE sidelink mode 3 UE, the eNB obtains the frequency domain information of the allocated resources in the NR sidelink resource pool, and then selects the NR sidelink in the LTE sidelink mode 3 resource pool. The resources in the resource pool that have been allocated do not overlap in the frequency domain. Finally, the selected resources are sent to the gNB, so that the gNB indicates to the LTE sidelink mode 3 UE.
  • the specific implementation manner may be as follows:
  • Method 1 After receiving the resource application information sent by LTE sidelink mode 3 UE, eNB sends the resource application information to gNB, so that gNB can obtain the allocated resources of LTE sidelink mode 3 resource pool, and then in the LTE sidelink mode 3 resource pool Among the resources other than the allocated resources, resources are selected for the LTE sidelink mode 3 UE, and the selected resources are sent to the eNB so that the eNB instructs the LTE sidelink mode 3 UE.
  • Method 2 After receiving the resource application information sent by LTE sidelink mode 3, the UE sends the resource application information to gNB, so that gNB obtains the time domain information of the allocated resources in the NR sidelink resource pool, and then in LTE sidelink mode 3 Select resources in the resource pool that do not overlap with the time domain of the allocated resources in the NR sidelink resource pool, and finally send the selected resources to the eNB, which is instructed by the eNB to LTE sidelink mode 3 UE.
  • Method 3 After receiving the resource application information sent by LTE sidelink mode 3, the UE sends the resource application information to gNB, so that gNB obtains the frequency domain information of the allocated resources in the NR sidelink resource pool, and then in LTE sidelink mode 3 Select resources in the resource pool that do not overlap with the frequency domain of the allocated resources in the NR sidelink resource pool, and finally send the selected resources to the eNB, which is instructed by the eNB to LTE sidelink mode 3 UE.
  • a specific implementation manner may be as follows:
  • Method 1 After receiving the resource application information sent by the LTE sidelink mode 3 UE, the eNB sends the resource application information to the gNB, so that the gNB obtains the allocated resources in the LTE sidelink mode 3 resource pool, and then in the LTE sidelink mode 3 resource pool Among the resources except those that have been allocated, select resources for the LTE sidelink mode 3 UE, and indicate the selected resources to the LTE sidelink mode 3 UE.
  • Method 2 After receiving the resource application information sent by LTE sidelink mode 3, the UE sends the resource application information to gNB, so that gNB obtains the time domain information of the allocated resources in the NR sidelink resource pool, and then in LTE sidelink mode 3 Select resources in the resource pool that do not overlap with the time domain of the allocated resources in the NR sidelink resource pool, and finally indicate the selected resources to LTE sidelink mode 3 UE.
  • Method 3 After receiving the resource application information sent by LTE sidelink mode 3, the UE sends the resource application information to gNB, so that gNB obtains the frequency domain information of the allocated resources in the NR sidelink resource pool, and then in LTE sidelink mode 3 Select resources in the resource pool that do not overlap with the frequency domain of the allocated resources in the NR sidelink resource pool, and finally indicate the selected resources to LTE sidelink mode 3 UE.
  • the specific implementation manner may refer to the foregoing implementation manners of the first combination to the fourth combination, which will not be repeated here.
  • the resource allocation method of some embodiments of the present disclosure can be used to allocate resources or resource pools that do not conflict with LTE, sidelink, mode, X, UE, and LTE, sidelink, mode, and UE, and NR, sidelink, mode, X, UE, and NR sidelink mode
  • Non-overlapping resources or resource pools are allocated to LTE sidelink mode X UE allocation and NR sidelink mode Y resource allocation to meet the given frequency division or resource pool, LTE sidelink mode allocation X and UE NR sidelink allocation mode Y UE allocation Resources or resource pools transmitted according to a fixed pattern.
  • the resource allocation methods of some embodiments of the present disclosure can perform resource reuse and improve
  • auxiliary information may be needed when selecting a resource or resource pool for the UE, for example: the range of the selected resource or resource pool in the time domain, the range of the frequency domain, the range that cannot be selected, and the template to be followed (pattern) conditions, resource occupation information, resource reservation information, interference measurement information, etc. If the selected base station does not understand these auxiliary information, it needs to be obtained during the interaction between the base stations.
  • the resources selected for the user may include a portion that does not overlap with the allocated resource in the time domain, a portion that does not overlap in the frequency domain, and a resource location of the allocated resource in the same resource pool. part. That is, in the third and fourth embodiments, the specific methods for selecting resources for user equipment may be combined with each other.
  • the above takes the interaction of two base stations as an example, and the interaction between multiple base stations can be regarded as multiple pairwise interactions.
  • the above is an example in which two base stations schedule one resource pool or two resource pools for user equipment, and the case where two base stations schedule more than two resource pools for one user equipment can be analogized in turn.
  • the base station 500 includes:
  • the first sending module 501 is configured to send resource indication information to a second base station, where the resource indication information is used to determine a second resource pool that can be scheduled by the second base station, where the second resource pool and the first The first resource pool that can be scheduled by a base station does not conflict.
  • the first sending module 501 is specifically used to:
  • the first sending module 501 is specifically used to:
  • the base station also includes:
  • a first resource pool receiving module configured to receive the first resource pool information sent by the second base station, the first resource pool is the second base station from the first target resource pool according to the first allocation principle Selected resource pool;
  • the first sending module 501 is specifically used to:
  • a first resource pool that can be scheduled by the first base station is selected from the first target resource pool, and a resource location that can be scheduled by the second base station and that is related to the first resource pool is selected Non-overlapping second resource pool;
  • the first sending module 501 is specifically used to:
  • the base station also includes:
  • a first resource pool receiving module configured to receive information of the first resource pool sent by the second base station, where the first resource pool is the second base station according to the first reference information and the second allocation principle Select a resource pool that can be scheduled by the first base station in the first target resource pool;
  • the first sending module 501 is specifically used to:
  • the first reference information and the second allocation principle select a first resource pool that can be scheduled by the first base station in the first target resource pool, and select a resource that can be scheduled by the second base station and A second resource pool where the resource positions of the first resource pool do not overlap;
  • the first sending module 501 is specifically used to:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the first sending module 501 is specifically used to:
  • the base station also includes:
  • a first resource pool receiving module configured to receive information of the first resource pool sent by the second base station, where the first resource pool is the second base station in the second target resource pool according to the third allocation principle Selecting a resource pool that can be scheduled by the first base station;
  • the first sending module 501 is specifically used to:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the first sending module 501 is specifically used to:
  • the base station also includes:
  • a first resource pool receiving module configured to receive information of the first resource pool sent by the second base station, where the first resource pool is the second base station according to the second reference information and the fourth allocation principle , Selecting a resource pool that can be scheduled for the first base station in the second target resource set;
  • the first sending module 501 is specifically used to:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the first sending module 501 is specifically used to:
  • the fifth allocation principle is used to indicate the selection of a first resource pool that can be scheduled by the first base station in the second target resource pool, Selecting a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the base station also includes:
  • a first resource pool receiving module configured to receive the first resource pool information sent by the second base station, the first resource pool is the second base station according to a predetermined fifth allocation principle, in the second target resource Selecting a resource pool that can be scheduled by the first base station in the pool;
  • the first sending module 501 is specifically used to:
  • the first sending module 501 is specifically used to:
  • the base station also includes:
  • a first resource pool receiving module configured to receive information of a first resource pool sent by a second base station, where the first resource pool is the second base station according to the third reference information and the sixth allocation principle, in Selecting a resource pool that can be scheduled by the first base station in the second target resource pool;
  • the first sending module 501 is specifically used to:
  • the third reference information and the sixth allocation principle select a first resource pool that the first base station can schedule in the second target resource pool, and select the second base station in the third target resource pool A second resource pool that can be scheduled and does not overlap with the first resource pool in the time domain;
  • the first sending module 501 is specifically used to:
  • the first sending module 501 is specifically used to:
  • the base station also includes:
  • a first resource pool receiving module configured to receive the first resource pool information sent by the second base station, the first resource pool is the second base station in the second target resource pool according to a predetermined seventh allocation principle Select a resource pool that the first base station can schedule;
  • the first sending module 501 is specifically used to:
  • the first sending module 501 is specifically used to:
  • the base station also includes:
  • the first sending module 501 is specifically used to:
  • the first sending module 501 is specifically used to:
  • the ninth allocation principle is used to indicate the selection of a first resource pool that can be scheduled by the first base station in the second target resource pool, Selecting, from the third target resource pool, a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the frequency domain;
  • the base station also includes:
  • a first resource pool receiving module configured to receive information of the first resource pool sent by the second base station, where the first resource pool is the second base station according to a predetermined ninth allocation principle Selecting a resource pool that can be scheduled by the first base station in the pool;
  • the first sending module 501 is specifically used to:
  • the first sending module 501 is specifically used to:
  • a first resource pool that can be scheduled by the first base station, and a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the frequency domain is selected from the third target resource pool;
  • the base station also includes:
  • a first resource pool receiving module configured to receive information of the first resource pool sent by the second base station, where the first resource pool is the second base station according to the fifth reference information and the tenth allocation principle Select a resource pool that can be scheduled by the first base station in the second target resource pool;
  • the fifth reference information and the tenth allocation principle select a first resource pool that the first base station can schedule in a second target resource pool, and select the second base station in a third target resource pool A second resource pool that can be scheduled and does not overlap with the first resource pool in the frequency domain;
  • the base station further includes:
  • the request receiving module is configured to receive the resource configuration request sent by the second base station.
  • the base station further includes:
  • the confirmation receiving module is configured to receive the resource indication confirmation information sent by the second base station.
  • the frequency interval between the first resource pool and the second resource pool is greater than a first preset threshold.
  • the time slot interval between the first resource pool and the second resource pool is greater than a second preset threshold .
  • the first resource pool is a Uu transmission resource pool or a sidelink transmission resource pool
  • the second resource pool is a Uu transmission resource pool or a sidelink transmission resource pool.
  • the first sending module 501 is specifically used to:
  • the resource indication information is sent to the second base station through the X2 interface or Xn interface or S1 interface or NG interface or the interface with the operation management and maintenance entity.
  • the base station 600 includes:
  • the first receiving module 601 is configured to receive resource indication information sent by the first base station
  • the resource determination module 602 is configured to determine a second resource pool that can be scheduled by the second base station according to the resource indication information, where the second resource pool does not conflict with the first resource pool that can be scheduled by the first base station .
  • the resource indication information is information of the first resource pool; the resource determination module 602 is specifically configured to:
  • the resource indication information is information of a second resource pool selected by the first base station in a resource pool other than the first resource pool in the first target resource pool, and the resource determination module 602 is specifically configured to:
  • the first resource pool is a resource pool that can be scheduled by the first base station selected by the first base station from the first target resource pool.
  • the resource indication information is a predetermined first allocation principle
  • the resource determination module 602 is specifically configured to:
  • a first resource pool that can be scheduled by the first base station and a first resource pool that can be scheduled by the second base station and that do not overlap with the resource position of the first resource pool are selected from the first target resource pool according to the first allocation principle Two resource pools;
  • the base station also includes:
  • a first resource pool information sending module configured to: send the information of the first resource pool to the first base station;
  • the resource indication information is information of a second resource pool
  • the second resource pool is selected by the first base station from the first target resource pool according to the first allocation principle, and can be scheduled by the second base station
  • the resource determination module 602 is specifically configured to:
  • the first resource pool is a resource pool that can be scheduled by the first base station selected from the first target resource pool according to the first allocation principle.
  • the resource indication information includes first reference information and a predetermined second allocation principle, and the first reference information is required when allocating a resource pool in the first target resource pool according to the second allocation principle Information; the resource determination module 602 is specifically used to:
  • the first reference information and the second allocation principle select a first resource pool that can be scheduled by the first base station in the first target resource pool, and the first resource pool that can be scheduled by the second base station and that is related to the first resource A second resource pool where the resource positions of the pool do not overlap;
  • the base station also includes:
  • a first resource pool sending module configured to: send the information of the first resource pool to the first base station;
  • the resource indication information is information of a second resource pool, and the second resource pool is selected by the first base station in the first target resource pool according to the first reference information and the second allocation principle.
  • the resource pool that can be scheduled by the second base station and does not overlap with the resource position of the first resource pool, and the step of determining the second resource pool that can be scheduled by the second base station according to the resource indication information includes:
  • the first resource pool is a resource pool that can be scheduled by the first base station selected from the first target resource pool according to the first reference information and the first allocation principle.
  • the resource indication information is information of the first resource pool; the resource determination module 602 is specifically configured to:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the resource indication information is information of a second resource pool.
  • the second resource pool is the second base station selected by the first base station in the third target resource pool according to the time domain information of the first resource pool.
  • a resource pool that is scheduled and does not overlap with the first resource pool in the time domain; the resource determination module 602 is specifically configured to:
  • the first resource pool is a resource pool that can be scheduled by the first base station selected by the first base station from the second target resource pool.
  • the resource indication information is a predetermined third allocation principle; the resource determination module 602 is specifically configured to:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the base station also includes:
  • a first resource pool information sending module configured to: send the information of the first resource pool to the first base station;
  • the resource indication information is information of a second resource pool.
  • the second resource pool is selected by the first base station from the third target resource pool according to time domain information of the first resource.
  • the second base station may A resource pool that is scheduled and does not overlap with the first resource pool in the time domain, the first resource pool is selected by the first base station from the second target resource pool according to the third allocation principle
  • the resource pool that the first base station can schedule; the resource determination module 602 is specifically configured to:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information includes second reference information and a predetermined fourth allocation principle, and the second reference information is required when allocating resources in the second target resource pool according to the fourth allocation principle Information; the resource determination module 602 is specifically used to:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the base station also includes:
  • a first resource pool information sending module configured to: send the information of the first resource pool to the first base station;
  • the resource indication information is information of a second resource pool, the second resource pool is selected by the first base station from a third target resource pool according to time domain information of the first resource pool, and the second base station A resource pool that can be scheduled and does not overlap with the first resource pool in the time domain, where the first resource pool is based on the second reference information and the fourth allocation principle A resource pool that can be scheduled by the first base station selected from the second target resource pool;
  • the resource determination module 602 is specifically configured to:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information is a predetermined fifth allocation principle; the resource determination module 602 is specifically configured to:
  • the base station also includes:
  • a first resource pool information sending module configured to: send the information of the first resource pool to the first base station;
  • the resource indication information is information of a second resource pool, the second resource pool is selected by the first base station in the third target resource pool according to the fifth allocation principle, and the second base station may schedule Resource pool that does not overlap with the first resource pool in the time domain, the first resource pool is the one selected by the first base station from the second target resource pool according to the fifth allocation principle
  • a resource pool that can be scheduled by the first base station; the resource determination module 602 is specifically configured to:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information includes third reference information and a predetermined sixth allocation principle, and the third reference information is required when allocating a resource pool in the second target resource pool according to the sixth allocation principle Information; the resource determination module 602 is specifically used to:
  • the third reference information and the sixth allocation principle select a first resource pool that the first base station can schedule in the second target resource pool, and select a second base station that can be scheduled in the third target resource pool And a second resource pool that does not overlap with the first resource pool in the time domain;
  • the base station also includes:
  • a first resource pool information sending module configured to: send the information of the first resource pool to the first base station;
  • the resource indication information is information of a second resource pool, and the second resource pool is selected by the first base station in the third target resource pool according to the third reference information and the sixth allocation principle, A resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain, and the first resource pool is the first base station according to the third reference information and the first Five allocation principles A resource pool that can be scheduled by the first base station selected in the second target resource pool; the resource determination module 602 is specifically configured to: directly use the second resource pool as the second base station can be scheduled Resource pool.
  • the resource indication information is information of the first resource pool; the resource determination module 602 is specifically configured to:
  • the frequency domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the frequency domain in the third target resource pool;
  • the resource indication information is information of a second resource pool.
  • the second resource pool is the second base station selected by the first base station from the third target resource pool according to the frequency domain information of the first resource pool.
  • a resource pool that is scheduled and does not overlap with the first resource pool in the frequency domain; the resource determination module 602 is specifically configured to:
  • the first resource pool is a resource pool that can be scheduled by the first base station selected by the first base station from the second target resource pool.
  • the resource indication information is a predetermined seventh allocation principle; the resource determination module 602 is specifically configured to:
  • the base station also includes:
  • a first resource pool information sending module configured to: send the information of the first resource pool to the first base station;
  • the resource indication information is information of a second resource pool, the second resource pool is selected by the first base station in the third target resource pool according to frequency domain information of the first resource pool, and the second base station A resource pool that can be scheduled and does not overlap with the first resource pool in the frequency domain, where the first resource pool is selected by the first base station from the second target resource pool according to a predetermined seventh allocation principle A resource pool that can be scheduled by the first base station; the resource determination module 602 is specifically configured to:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information includes fourth reference information and a predetermined eighth allocation principle, and the fourth reference information is required when allocating resources in the second target resource pool according to the eighth allocation principle Information; the resource determination module 602 is specifically used to:
  • the base station also includes:
  • a first resource pool information sending module configured to: send the information of the first resource pool to the first base station;
  • the resource indication information is information of a second resource pool, the second resource pool is selected by the first base station in the third target resource pool according to frequency domain information of the first resource pool, and the second base station A resource pool that can be scheduled and does not overlap with the first resource pool in the frequency domain.
  • the first resource pool is the first base station according to the fourth reference information and the eighth allocation principle.
  • a resource pool that can be scheduled by the first base station selected from two target resource pools; the resource determination module 602 is specifically configured to:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information is a predetermined ninth allocation principle; the resource determination module 602 is specifically configured to:
  • the ninth allocation principle select a first resource pool that can be scheduled by the first base station in the second target resource pool, and select a first resource pool that can be scheduled by the second base station and the first resource in the third target resource pool A second resource pool that does not overlap in the frequency domain;
  • the base station also includes:
  • a first resource pool information sending module configured to: send the information of the first resource pool to the first base station;
  • the resource indication information is information of a second resource pool, the second resource pool is selected by the first base station from the third target resource pool according to the ninth allocation principle, and the second base station may schedule Resource pool that does not overlap with the first resource pool in the frequency domain, the first resource pool is the one selected by the first base station from the second target resource pool according to the ninth allocation principle
  • a resource pool that can be scheduled by the first base station; the resource determination module 602 is specifically configured to:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information includes fifth reference information and a predetermined tenth allocation principle, and the fifth reference information is required when allocating the resource pool in the second target resource pool according to the tenth allocation principle Information; the resource determination module 602 is specifically used to:
  • the fifth reference information and the tenth allocation principle select the first resource pool that the first base station can schedule in the second target resource pool, and select the second base station that can be scheduled in the third target resource pool And a second resource pool that does not overlap with the first resource pool in the frequency domain;
  • the base station also includes:
  • a first resource pool information sending module configured to: send the information of the first resource pool to the first base station;
  • the resource indication information is information of a second resource pool, and the second resource pool is selected by the first base station in the third target resource pool according to the fifth reference information and the tenth allocation principle, A resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the frequency domain, where the first resource pool is the first base station according to the fifth reference information and the first Ten allocation principles
  • the resource pool that can be scheduled by the first base station selected in the second target resource pool; the resource determination module 602 is specifically configured to:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the base station further includes:
  • the request sending module is configured to send a resource configuration request to the second base station.
  • the base station further includes:
  • the confirmation sending module is configured to send the resource indication confirmation information to the second base station.
  • the base station further includes:
  • the resource selection module is used to select a part of the resource pool from the second resource pool as the resource pool scheduled by the second base station.
  • the frequency interval between the first resource pool and the second resource pool is greater than a first preset threshold.
  • the time slot interval between the first resource pool and the second resource pool is greater than a second preset threshold .
  • the first resource pool is a Uu transmission resource pool or a sidelink transmission resource pool
  • the second resource pool is a Uu transmission resource pool or a sidelink transmission resource pool.
  • the first receiving module 601 is specifically configured to receive the resource indication information sent by the first base station through the X2 interface or the Xn interface or the S1 interface or the NG interface or the interface with the operation management and maintenance entity.
  • the base station 700 includes:
  • the second receiving module 701 is configured to receive resource application information sent by the target user equipment
  • a resource acquisition module 702 configured to acquire a fourth resource allocated to the target user equipment, wherein the fourth resource does not conflict with the allocated third resource;
  • the second sending module 703 is configured to send the information of the fourth resource to the target user equipment, or send the information of the fourth resource to a second base station, so that the second base station sends the fourth The resource information is sent to the target user equipment.
  • the resource application information is used to apply for Uu transmission resources or sidelink transmission resources.
  • the step of sending the information of the fourth resource to the user equipment includes:
  • the second sending module 703 is specifically configured to:
  • the information of the fourth resource is sent to the second base station through the X2 interface or Xn interface or S1 interface or NG interface or the interface with the operation management and maintenance entity.
  • the base station further includes:
  • Guidance information sending module for:
  • the resource acquisition module 702 is specifically used to:
  • the resource acquisition module 702 is specifically used to:
  • the time domain information of the third resource among the unallocated resources in the sixth target resource pool, select a fourth resource that does not overlap with the third resource in the time domain for the target user equipment;
  • the resource acquisition module 702 is specifically used to:
  • the frequency domain information of the third resource among the unallocated resources in the sixth target resource pool, select a fourth resource that does not overlap with the third resource in the frequency domain for the target user equipment;
  • Receiving information of the fourth resource sent by the second base station, where the fourth resource is the unallocated resource in the third resource pool of the second base station according to the resource application information is A resource selected by the target user equipment and not overlapping with the third resource in the frequency domain, where the third resource is an allocated resource in a fifth target resource pool acquired by the second base station.
  • the frequency interval between the third resource and the fourth resource is greater than a third preset threshold.
  • the time slot interval between the third resource and the fourth resource is greater than a fourth preset threshold.
  • the base station 800 includes:
  • the information obtaining module 801 is used to obtain information of the fourth resource
  • the fourth resource does not conflict with the allocated third resource.
  • the step of acquiring information of the fourth resource includes:
  • Receive information about the fourth resource sent by the first base station through the X2 interface, Xn interface, S1 interface, NG interface, or interface with the operation management and maintenance entity.
  • the step of sending the information of the fourth resource to the target user equipment includes:
  • the base station further includes:
  • An information receiving module configured to receive relevant information sent by the first base station to guide user equipment to perform data transmission on the fourth resource
  • the information forwarding module is used to send the related information to the target user equipment.
  • the fourth resource is a resource selected by the first base station or the second base station for the target user equipment among resources other than the third resource that has been allocated in the fourth target resource pool.
  • the fourth resource is the first base station or the second base station. According to the time domain information of the third resource that has been allocated in the fifth target resource pool, it is not found in the sixth target resource pool. Among the allocated resources, resources that are selected for the target user equipment and do not overlap with the third resource in the time domain.
  • the fourth resource is the first base station or the second base station. According to frequency domain information of the third resource that has been allocated in the fifth target resource pool, it is not found in the sixth target resource pool. Among the allocated resources, resources that are selected for the target user equipment and do not overlap with the third resource in the frequency domain.
  • the frequency interval between the third resource and the fourth resource is greater than a third preset threshold.
  • the time slot interval between the third resource and the fourth resource is greater than a fourth preset threshold.
  • some embodiments of the present disclosure further provide a base station, which includes:
  • a first processor 900 a first memory 920 connected to the first processor 900 through a bus interface, and a first transceiver 910 connected to the first processor 900 through a bus interface; the first memory 920 It is used to store programs and data used by the first processor when performing operations; send data information or pilots through the first transceiver 910, and also receive an uplink control channel through the first transceiver 910;
  • the first transceiver 910 is used to:
  • the first transceiver 910 sends resource indication information to the second base station, it is specifically used to:
  • the first transceiver 910 sends resource indication information to the second base station, it is specifically used to:
  • the first transceiver 910 is also used to:
  • the first transceiver 910 is specifically used to:
  • a first resource pool that can be scheduled by the first base station is selected from the first target resource pool, and a resource location that can be scheduled by the second base station and that is related to the first resource pool is selected Non-overlapping second resource pool;
  • the first transceiver 910 sends resource indication information to the second base station, it is specifically used to:
  • the first transceiver 910 is also used to:
  • the first transceiver 910 is specifically used to:
  • the first reference information and the second allocation principle select a first resource pool that can be scheduled by the first base station in the first target resource pool, and select a resource that can be scheduled by the second base station and A second resource pool where the resource positions of the first resource pool do not overlap;
  • the first transceiver 910 sends resource indication information to the second base station, it is specifically used to:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the first transceiver 910 sends resource indication information to the second base station, it is specifically used to:
  • the first transceiver 910 is further used to:
  • the first transceiver 910 is specifically used to:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the first transceiver 910 sends resource indication information to the second base station, it is specifically used to:
  • the first transceiver 910 is also used to:
  • the first transceiver 910 is specifically used to:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the first transceiver 910 sends resource indication information to the second base station, it is specifically used to:
  • the fifth allocation principle is used to indicate the selection of a first resource pool that can be scheduled by the first base station in the second target resource pool, Selecting a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the first transceiver 910 is further used to:
  • the first resource pool is that the second base station may select the first base station in the second target resource pool according to a predetermined fifth allocation principle Scheduling resource pool;
  • the first transceiver 910 is specifically used to:
  • the first transceiver 910 sends resource indication information to the second base station, it is specifically used to:
  • the first transceiver 910 is further used to:
  • the first transceiver 910 is specifically used to:
  • the third reference information and the sixth allocation principle select a first resource pool that the first base station can schedule in the second target resource pool, and select the second base station in the third target resource pool A second resource pool that can be scheduled and does not overlap with the first resource pool in the time domain;
  • the first transceiver 910 sends resource indication information to the second base station, it is specifically used to:
  • the first transceiver 910 sends resource indication information to the second base station, it is specifically used to:
  • the first transceiver 910 is also used to:
  • the first transceiver 910 is specifically used to:
  • the frequency domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the frequency domain in the third target resource pool;
  • the first transceiver 910 sends resource indication information to the second base station, it is specifically used to:
  • the first transceiver 910 is also used to:
  • the first transceiver 910 is specifically used to:
  • the first transceiver 910 sends resource indication information to the second base station, it is specifically used to:
  • the ninth allocation principle is used to indicate the selection of a first resource pool that can be scheduled by the first base station in the second target resource pool, Selecting, from the third target resource pool, a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the frequency domain;
  • the first transceiver 910 is also used to:
  • the first resource pool is that the second base station may select the first base station in the second target resource pool according to a predetermined ninth allocation principle Scheduling resource pool;
  • the first transceiver 910 is specifically used to:
  • the first transceiver 910 sends resource indication information to the second base station, it is specifically used to:
  • a first resource pool that can be scheduled by the first base station, and a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the frequency domain is selected from the third target resource pool;
  • the first transceiver 910 is also used to:
  • the first transceiver 910 is specifically used to:
  • the fifth reference information and the tenth allocation principle select a first resource pool that the first base station can schedule in a second target resource pool, and select the second base station in a third target resource pool A second resource pool that can be scheduled and does not overlap with the first resource pool in the frequency domain;
  • the first transceiver 910 is also used for:
  • the first transceiver 910 is also used for:
  • the frequency interval between the first resource pool and the second resource pool is greater than a first preset threshold.
  • the time slot interval between the first resource pool and the second resource pool is greater than a second preset threshold.
  • the first resource pool is a Uu transmission resource pool or a sidelink transmission resource pool
  • the second resource pool is a Uu transmission resource pool or a sidelink transmission resource pool.
  • the first transceiver 910 sends resource indication information to the second base station, it is specifically used to:
  • the resource indication information is sent to the second base station through the X2 interface or Xn interface or S1 interface or NG interface or the interface with the operation management and maintenance entity.
  • the bus architecture may include any number of interconnected buses and bridges, specifically one or more processors represented by the first processor 900 and various circuits of the memory represented by the first memory 920 are linked together .
  • the bus architecture can also link various other circuits such as peripheral devices, voltage regulators, and power management circuits, etc., which are well known in the art, and therefore, they will not be further described in this article.
  • the bus interface provides an interface.
  • the first transceiver 910 may be a plurality of elements, including a transmitter and a transceiver, and provides a unit for communicating with various other devices on a transmission medium.
  • the first processor 900 is responsible for managing the bus architecture and general processing, and the first memory 920 may store data used by the first processor 900 when performing operations.
  • a base station including:
  • a second processor 1000 a second memory 1020 connected to the second processor 1000 through a bus interface, and a second transceiver 1010 connected to the second processor 1000 through a bus interface; the second memory 1020 It is used to store programs and data used by the second processor when performing operations; send data information or pilots through the second transceiver 1010, and also receive an uplink control channel through the second transceiver 1010;
  • the second transceiver 1010 is used to: receive resource indication information sent by the first base station; the second processor 1000 is specifically used to The resource indication information determines a second resource pool that the second base station can schedule, where the second resource pool does not conflict with the first resource pool that the first base station can schedule.
  • the resource indication information is information of the first resource pool; when the second processor 1000 determines the second resource pool that the second base station can schedule according to the resource indication information, it is specifically used for:
  • the resource indication information is information of a second resource pool selected by the first base station in a resource pool other than the first resource pool in the first target resource pool, and the second processor 1000 determines according to the resource indication information
  • the second resource pool that the second base station can schedule is specifically used for:
  • the first resource pool is a resource pool that can be scheduled by the first base station selected by the first base station from the first target resource pool.
  • the resource indication information is a predetermined first allocation principle
  • the second processor 1000 is specifically used when determining the second resource pool that the second base station can schedule according to the resource indication information:
  • a first resource pool that can be scheduled by the first base station and a first resource pool that can be scheduled by the second base station and that do not overlap with the resource position of the first resource pool are selected from the first target resource pool according to the first allocation principle Two resource pools;
  • the second transceiver 1010 After the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information, the second transceiver 1010 is used to:
  • the resource indication information is information of a second resource pool
  • the second resource pool is selected by the first base station from the first target resource pool according to the first allocation principle, and can be scheduled by the second base station
  • a resource pool that does not overlap with the resource position of the first resource pool the second processor 1000 is specifically used when determining the second resource pool that the second base station can schedule according to the resource indication information:
  • the first resource pool is a resource pool that can be scheduled by the first base station selected from the first target resource pool according to the first allocation principle.
  • the resource indication information includes first reference information and a predetermined second allocation principle
  • the first reference information is information required when allocating a resource pool in the first target resource pool according to the second allocation principle
  • the second processor 1000 determines the second resource pool that the second base station can schedule according to the resource indication information, it is specifically used to:
  • the first reference information and the second allocation principle select a first resource pool that can be scheduled by the first base station in the first target resource pool, and the first resource pool that can be scheduled by the second base station and that is related to the first resource A second resource pool where the resource positions of the pool do not overlap;
  • the second transceiver 1010 After the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information, the second transceiver 1010 is used to:
  • the resource indication information is information of a second resource pool.
  • the second resource pool is selected by the first base station in the first target resource pool according to the first reference information and the second allocation principle.
  • the first resource pool is a resource pool that can be scheduled by the first base station selected from the first target resource pool according to the first reference information and the first allocation principle.
  • the resource indication information is information of the first resource pool; when the second processor 1000 determines the second resource pool that the second base station can schedule according to the resource indication information, it is specifically used for:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the resource indication information is information of a second resource pool.
  • the second resource pool is the second base station selected by the first base station in the third target resource pool according to the time domain information of the first resource pool.
  • the first resource pool is a resource pool that can be scheduled by the first base station selected by the first base station from the second target resource pool.
  • the resource indication information is a predetermined third allocation principle; when determining the second resource pool that the second base station can schedule according to the resource indication information, the second processor 1000 is specifically used for:
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the second transceiver 1010 After the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information, the second transceiver 1010 is used to:
  • the resource indication information is information of a second resource pool.
  • the second resource pool is selected by the first base station from the third target resource pool according to time domain information of the first resource.
  • the second base station may A resource pool that is scheduled and does not overlap with the first resource pool in the time domain, the first resource pool is selected by the first base station from the second target resource pool according to the third allocation principle
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information includes second reference information and a predetermined fourth allocation principle
  • the second reference information is information required when allocating resources in the second target resource pool according to the fourth allocation principle
  • the time domain information of the first resource pool select a second resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain in the third target resource pool;
  • the second transceiver 1010 After the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information, the second transceiver 1010 is used to:
  • the resource indication information is information of a second resource pool, the second resource pool is selected by the first base station from a third target resource pool according to time domain information of the first resource pool, and the second base station A resource pool that can be scheduled and does not overlap with the first resource pool in the time domain, where the first resource pool is based on the second reference information and the fourth allocation principle A resource pool selectable from the second target resource pool that can be scheduled by the first base station; when the second processor 1000 determines a second resource pool that can be scheduled by the second base station according to the resource indication information, it is specifically used :
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information is a predetermined fifth allocation principle; when determining the second resource pool that the second base station can schedule according to the resource indication information, the second processor 1000 is specifically used for:
  • the second transceiver 1010 After the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information, the second transceiver 1010 is used to:
  • the resource indication information is information of a second resource pool, the second resource pool is selected by the first base station in the third target resource pool according to the fifth allocation principle, and the second base station may schedule Resource pool that does not overlap with the first resource pool in the time domain, the first resource pool is the one selected by the first base station from the second target resource pool according to the fifth allocation principle
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information includes third reference information and a predetermined sixth allocation principle
  • the third reference information is information required when allocating a resource pool in the second target resource pool according to the sixth allocation principle
  • the second processor 1000 determines the second resource pool that the second base station can schedule according to the resource indication information, it is specifically used to:
  • the third reference information and the sixth allocation principle select a first resource pool that the first base station can schedule in the second target resource pool, and select a second base station that can be scheduled in the third target resource pool And a second resource pool that does not overlap with the first resource pool in the time domain;
  • the second transceiver 1010 After the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information, the second transceiver 1010 is used to:
  • the resource indication information is information of a second resource pool, and the second resource pool is selected by the first base station in the third target resource pool according to the third reference information and the sixth allocation principle, A resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the time domain, and the first resource pool is the first base station according to the third reference information and the first Five allocation principles: a resource pool that can be scheduled by the first base station selected in the second target resource pool; when the second processor 1000 determines a second resource pool that can be scheduled by the second base station according to the resource indication information, Specifically used for:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information is information of the first resource pool; when the second processor 1000 determines the second resource pool that the second base station can schedule according to the resource indication information, it is specifically used for:
  • the resource indication information is information of a second resource pool.
  • the second resource pool is the second base station selected by the first base station from the third target resource pool according to the frequency domain information of the first resource pool.
  • the first resource pool is a resource pool that can be scheduled by the first base station selected by the first base station from the second target resource pool.
  • the resource indication information is a predetermined seventh allocation principle; when determining the second resource pool that the second base station can schedule according to the resource indication information, the second processor 1000 is specifically used for:
  • the second transceiver 1010 After the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information, the second transceiver 1010 is used to:
  • the resource indication information is information of a second resource pool, the second resource pool is selected by the first base station in the third target resource pool according to frequency domain information of the first resource pool, and the second base station A resource pool that can be scheduled and does not overlap with the first resource pool in the frequency domain, where the first resource pool is selected by the first base station from the second target resource pool according to a predetermined seventh allocation principle A resource pool that can be scheduled by the first base station; when the second processor 1000 determines a second resource pool that can be scheduled by the second base station according to the resource indication information, it is specifically used to:
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information includes fourth reference information and a predetermined eighth allocation principle
  • the fourth reference information is information required when allocating resources in the second target resource pool according to the eighth allocation principle
  • the second transceiver 1010 After the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information, the second transceiver 1010 is used to:
  • the resource indication information is information of a second resource pool
  • the second resource pool is selected by the first base station in the third target resource pool according to frequency domain information of the first resource pool, and the second base station A resource pool that can be scheduled and does not overlap with the first resource pool in the frequency domain.
  • the first resource pool is the first base station according to the fourth reference information and the eighth allocation principle.
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information is a predetermined ninth allocation principle; when determining the second resource pool that the second base station can schedule according to the resource indication information, the second processor 1000 is specifically used for:
  • the ninth allocation principle select a first resource pool that can be scheduled by the first base station in the second target resource pool, and select a first resource pool that can be scheduled by the second base station and the first resource in the third target resource pool A second resource pool that does not overlap in the frequency domain;
  • the second transceiver 1010 After the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information, the second transceiver 1010 is used to:
  • the resource indication information is information of a second resource pool, the second resource pool is selected by the first base station from the third target resource pool according to the ninth allocation principle, and the second base station may schedule Resource pool that does not overlap with the first resource pool in the frequency domain, the first resource pool is the one selected by the first base station from the second target resource pool according to the ninth allocation principle
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the resource indication information includes fifth reference information and a predetermined tenth allocation principle
  • the fifth reference information is information required when allocating the resource pool in the second target resource pool according to the tenth allocation principle
  • the fifth reference information and the tenth allocation principle select the first resource pool that the first base station can schedule in the second target resource pool, and select the second base station that can be scheduled in the third target resource pool And a second resource pool that does not overlap with the first resource pool in the frequency domain;
  • the second transceiver 1010 After the step of determining a second resource pool that can be scheduled by the second base station according to the resource indication information, the second transceiver 1010 is used to:
  • the resource indication information is information of a second resource pool, and the second resource pool is selected by the first base station in the third target resource pool according to the fifth reference information and the tenth allocation principle, A resource pool that can be scheduled by the second base station and does not overlap with the first resource pool in the frequency domain, where the first resource pool is the first base station according to the fifth reference information and the first Ten allocation principles
  • the second resource pool is directly used as a resource pool that can be scheduled by the second base station.
  • the second transceiver 1010 is also used for:
  • the second transceiver 1010 is also used for:
  • the method further includes:
  • the frequency interval between the first resource pool and the second resource pool is greater than a first preset threshold.
  • the time slot interval between the first resource pool and the second resource pool is greater than a second preset threshold.
  • the first resource pool is a Uu transmission resource pool or a sidelink transmission resource pool
  • the second resource pool is a Uu transmission resource pool or a sidelink transmission resource pool.
  • the second transceiver 1010 When receiving the resource indication information sent by the first base station, the second transceiver 1010 is specifically used to receive the information sent by the first base station through the X2 interface or Xn interface or S1 interface or NG interface or the interface with the operation management and maintenance entity Resource instructions.

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

L'invention concerne un procédé d'attribution de ressources et une station de base. Le procédé consiste : à envoyer des informations d'indication de ressources à une seconde station de base, les informations d'indication de ressource étant utilisées pour déterminer un second groupe de ressources que la seconde station de base peut programmer, et le second groupe de ressources n'est pas en conflit avec un premier groupe de ressources qu'une première station de base peut programmer.
PCT/CN2019/114341 2018-11-02 2019-10-30 Procédé d'attribution de ressources et station de base Ceased WO2020088523A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201811303036.1A CN111148233A (zh) 2018-11-02 2018-11-02 一种资源分配方法及基站
CN201811303036.1 2018-11-02

Publications (1)

Publication Number Publication Date
WO2020088523A1 true WO2020088523A1 (fr) 2020-05-07

Family

ID=70463703

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2019/114341 Ceased WO2020088523A1 (fr) 2018-11-02 2019-10-30 Procédé d'attribution de ressources et station de base

Country Status (2)

Country Link
CN (1) CN111148233A (fr)
WO (1) WO2020088523A1 (fr)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113873545A (zh) * 2020-06-30 2021-12-31 维沃移动通信有限公司 资源指示方法、装置及通信设备
US12328761B2 (en) 2020-08-06 2025-06-10 Apple Inc. Schemes to avoid periodic resource collisions
CN114374482B (zh) * 2020-10-14 2025-02-14 大唐移动通信设备有限公司 一种信息传输方法、装置及终端
CN115278888A (zh) * 2021-04-30 2022-11-01 展讯半导体(南京)有限公司 资源指示方法及相关装置
CN117676828A (zh) * 2022-08-10 2024-03-08 维沃移动通信有限公司 资源配置方法、装置、终端、服务基站及介质

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2012159270A1 (fr) * 2011-05-25 2012-11-29 Renesas Mobile Corporation Affectation de ressources pour la communication d2d
CN105282793A (zh) * 2014-05-29 2016-01-27 普天信息技术有限公司 D2d中相邻基站之间协商ue发现资源的方法及装置
CN107645735A (zh) * 2016-07-21 2018-01-30 普天信息技术有限公司 一种V2X网络中sidelink的资源负载测量方法以及装置

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3057246B1 (fr) * 2013-10-10 2019-12-04 LG Electronics Inc. Procédé de gestion de ressources de transmission en liaison montante dans un système de communications sans fil, et appareil correspondant
US9888508B2 (en) * 2014-11-06 2018-02-06 Intel Corporation D2D communication devices and method of transmission for overlapped D2D resource pools
CN106304366A (zh) * 2015-05-15 2017-01-04 电信科学技术研究院 一种资源协调的指示方法及装置
CN107666648B (zh) * 2016-07-29 2020-07-10 普天信息技术有限公司 资源冲突解决方法、基站和终端

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2012159270A1 (fr) * 2011-05-25 2012-11-29 Renesas Mobile Corporation Affectation de ressources pour la communication d2d
CN105282793A (zh) * 2014-05-29 2016-01-27 普天信息技术有限公司 D2d中相邻基站之间协商ue发现资源的方法及装置
CN107645735A (zh) * 2016-07-21 2018-01-30 普天信息技术有限公司 一种V2X网络中sidelink的资源负载测量方法以及装置

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
MEDIATEK INC.: "On NR V2X Resource Allocation", 3GPP DRAFT; R1-1808281, 24 August 2018 (2018-08-24), Gothenburg, Sweden, pages 1 - 4, XP051515665 *

Also Published As

Publication number Publication date
CN111148233A (zh) 2020-05-12

Similar Documents

Publication Publication Date Title
US11082857B2 (en) Inter-carrier D2D resource allocation
CN110169159B (zh) 用于v2x通信的高功效资源利用
WO2020088523A1 (fr) Procédé d'attribution de ressources et station de base
CN115735348A (zh) 无线通信中双工模式之间的智能切换
US12389377B2 (en) Partial sensing method and device for device-to-device communication in wireless communication system
CN111757403A (zh) 一种资源配置方法及通信装置
EP2625917B1 (fr) Procédés et appareil pour une programmation commune de liaisons d'homologue à homologue et de liaisons de réseau étendu sans fil dans des réseaux cellulaires
US12471141B2 (en) Method and apparatus for communication
US12170988B2 (en) Direct current (DC) tone indication in sidelink
CN115380554A (zh) 交叉链路干扰(cli)测量适配
EP4027722A1 (fr) Procédé et appareil de configuration de liaison latérale, dispositif et support de stockage
CN108702757B (zh) 通信方法和通信装置
CN110521268A (zh) 用于超可靠和低时延通信的上行链路资源
JP2023514730A (ja) フィードバックリソース決定方法およびフィードバックリソース決定装置
WO2017128289A1 (fr) Procédé de renvoi d'informations d'état de canal, procédé et appareil d'attribution de ressources, et système de communication
US20220086804A1 (en) Data Transmission Method And Communication Apparatus
WO2016015252A1 (fr) Procédé, nœud b évolué (enb) maître et enb secondaire pour configurer des ressources de spectre
WO2023065874A1 (fr) Procédé et appareil de planification
JP7771437B2 (ja) サイドリンク通信方法および装置
JP7689643B1 (ja) 通信方法および端末デバイス
EP4576912A1 (fr) Procédé et appareil de communication en liaison latérale
WO2025066734A1 (fr) Procédé d'indication et appareil associé
WO2024234996A1 (fr) Procédé de communication et appareil associé
TWI442730B (zh) 用於一無線通訊在統之通訊裝置、通訊方法、行動裝置及其電腦程式產品
CN115866616A (zh) 资源分配的方法和通信装置

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 19879957

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 19879957

Country of ref document: EP

Kind code of ref document: A1