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WO2010075702A1 - Procédé et système pour la mise en oeuvre d'une commande de travail automatique dans un réseau optique passif éthernet (epon) - Google Patents

Procédé et système pour la mise en oeuvre d'une commande de travail automatique dans un réseau optique passif éthernet (epon) Download PDF

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Publication number
WO2010075702A1
WO2010075702A1 PCT/CN2009/073745 CN2009073745W WO2010075702A1 WO 2010075702 A1 WO2010075702 A1 WO 2010075702A1 CN 2009073745 W CN2009073745 W CN 2009073745W WO 2010075702 A1 WO2010075702 A1 WO 2010075702A1
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WO
WIPO (PCT)
Prior art keywords
onu
anm
olt
configuration
information
Prior art date
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Ceased
Application number
PCT/CN2009/073745
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English (en)
Chinese (zh)
Inventor
李锐
周旭君
胡子文
叶立生
龚雅芬
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Fiberhome Telecommunication Technologies Co Ltd
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Fiberhome Telecommunication Technologies Co Ltd
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Publication of WO2010075702A1 publication Critical patent/WO2010075702A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q11/00Selecting arrangements for multiplex systems
    • H04Q11/0001Selecting arrangements for multiplex systems using optical switching
    • H04Q11/0062Network aspects
    • H04Q11/0067Provisions for optical access or distribution networks, e.g. Gigabit Ethernet Passive Optical Network (GE-PON), ATM-based Passive Optical Network (A-PON), PON-Ring
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
    • H04L41/0813Configuration setting characterised by the conditions triggering a change of settings
    • H04L41/0816Configuration setting characterised by the conditions triggering a change of settings the condition being an adaptation, e.g. in response to network events
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/50Network service management, e.g. ensuring proper service fulfilment according to agreements
    • H04L41/5041Network service management, e.g. ensuring proper service fulfilment according to agreements characterised by the time relationship between creation and deployment of a service
    • H04L41/5054Automatic deployment of services triggered by the service manager, e.g. service implementation by automatic configuration of network components
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q11/00Selecting arrangements for multiplex systems
    • H04Q11/0001Selecting arrangements for multiplex systems using optical switching
    • H04Q11/0062Network aspects
    • H04Q2011/0079Operation or maintenance aspects

Definitions

  • the present invention relates to a method and system for implementing an automated work order in an EPON. Background technique
  • the Ethernet Passive Optical Network is a new type of fiber access network technology that uses point-to-multipoint architecture and passive optical fiber transmission to provide multiple services over Ethernet. It uses PON technology at the physical layer, Ethernet protocol at the link layer, and Ethernet access using the PON topology. Therefore, it combines the advantages of PON technology and Ethernet technology: low cost; high bandwidth; strong scalability, flexible and fast service reorganization; compatibility with existing Ethernet; convenient management and so on.
  • EPON consists of a fiber-optic line termination, an optical distribution network (ODN), and an optical network unit, using a tree topology. Data and voice are transmitted using upstream 1 310 nm and downstream 1 490 nm wavelengths, while CATV services are carried at 1 550 nm wavelength.
  • the OLT is placed at the central office, and the connection of control and control channels is provided, with real-time monitoring, management, and maintenance functions.
  • the ONU is placed on the user side, and the OLT and the ONU are connected by a passive optical distribution network in a 1:16/1:32/1:64 mode.
  • the EPON network uses a point-to-point topology to replace the point-to-point structure, which greatly saves fiber usage and management costs.
  • Passive network equipment replaces repeaters, amplifiers, and lasers in traditional ATM/SONET broadband access systems, reducing the number of lasers required at the central office, and the OLT is shared by many ONU users.
  • EPON utilizes Ethernet technology and uses standard Ethernet frames to carry current mainstream services and IP services without any conversion. Therefore, EPON is very simple, efficient, low construction cost and low maintenance cost, and is most suitable for broadband access network needs.
  • EPON the process of transmitting data from the OLT to multiple ONUs is transmitted by means of data broadcasting.
  • the data is broadcasted downstream from the OLT to multiple ONUs in the form of variable length packets.
  • the maximum packet size is 1 518 bytes.
  • Each packet carries an EPON header that uniquely identifies whether the packet is addressed to ONU-l, ONU-2, or ONU-3. It can also be identified as a broadcast packet sent to all ONUs or to a specific ONU group (multicast packet).
  • multicast packet When the data arrives at the ONU, the ONU receives and identifies the packet sent to it by address matching, and discards the packet sent to other ONUs.
  • an object of the present invention is to provide a method for reducing the workload of a network maintenance center staff and improving the efficiency of service opening.
  • the present invention provides a method for implementing an automatic work order in an EPON, comprising the following steps:
  • OLT accessing the network When the user completes the OLT data configuration on the broadband access network management system ANM, the OLT access button is clicked. At this time, the ANM sends a query command to query the OLT for the OLT access information, and the ANM receives the network return from the OLT. The information is reported to the resource management system RMS, and the RMS returns an OLT incoming response message to the ANM, and the ANM informs the OLT of the network access result of the OLT;
  • ONU power-on automatic authorization/configuration procedure When the EPON interface disk EC2 detects the ONU registration information, if the ONU is authorized, the ONU is set according to the configuration in the ROM. If the ONU is not authorized, the EC2 reports the ONU information to the ONU.
  • the EC2 authorizes the ONU.
  • the GSWC configures the temporary VLAN. All the ports of the ONU join the 3998 temporary Internet access VLAN in the UNTAG mode, and deliver the configuration package to the EC2.
  • the EC2 performs the corresponding port configuration.
  • the OLT After the OLT completes the ONU automatic authorization/configuration, it reports the ONU network access information to the ANM.
  • the ANM sends the ONU network information to the RMS. After receiving the information, the RMS sends the ONU configuration information to the ANM.
  • the ANM sends the configuration information. Send to the OLT, the OLT returns the configuration execution result to the ANM, and the ANM sends the configuration execution result to the RMS;
  • HG network access procedure After the OLT completes the ONU network access process, if the ONU port downlink device is detected as the home gateway HG, the HG registration is initiated. After receiving the HG information, the ANM reports the RMS, and the RMS and the home gateway access control server HG ACS The HG is communicated and the operation result is returned. When the HG network information is reported, the EC2 detects that the ONU port is connected to the HG. If the HG has entered the network, the ECG reports the HG network access information. Reporting HG information in TRAP mode;
  • Voice port activation step The RMS sends a voice port activation message to the ANM, and the ANM sends the message to the OLT; the OLT responds to the voice port activation confirmation message to the ANM, and then the ANM responds to the message to the RMS;
  • Disassemble step The RMS delivers the teardown command message to the ANM, and the ANM sends the teardown command message to the OLT. After receiving the HG teardown command, the OLT returns an error message if the parameter is invalid. If the parameter is valid, configure the ONU and send a configuration command to EC2 to clear the HG in-position information and the network success message. EC2 receives the configuration command and then modifies it. Related configuration, clear HG in-position information and network success message.
  • the method further comprises:
  • Voice port deactivation step The RMS sends a voice port deactivation message to the ANM.
  • the ANM sends the message to the OLT.
  • the OLT responds to the voice port to deactivate the confirmation message to the ANM, and then the ANM responds to the message to the RMS.
  • the method further comprises:
  • step 4 Check whether the device type connected to the ONU port changes, otherwise, the connection device change processing flow is ended; if yes, step 4 is performed;
  • the GSWC performs related configuration and sends the configuration information to EC2.
  • EC2 will modify it after receiving the configuration information.
  • the method further comprises:
  • step (4) Determine whether the new ONU is consistent with the original ONU type. If not, the ONU type mismatch prompt alarm is generated, and the replacement process is ended. If yes, step (4) is performed;
  • the GSWC sends the original ONU's de-authorization command to the EC2, and the original configuration is associated with the new ONU.
  • the backup ONUmac address parameter is cleared, and the configuration is sent to the EC2.
  • the ONU replacement success prompt alarm is generated, and the ONU replacement success event is generated.
  • EC2 is configured accordingly.
  • the invention also proposes a system for realizing an automatic work order in EP0N, the system comprising:
  • the resource management system RMS is connected to the home gateway control server HG ACS.
  • the HG ACS is used to control and manage the home gateway HG, and is connected to the corresponding Internet and media gateway controller MGC through the metropolitan area network;
  • the OLT is connected through the optical splitter ODN.
  • the ONUs, the ONUs are connected to the VOIP, the PC, the IPTV service, or the services are connected through the HG.
  • the OLT connects to the RMS through the broadband access network management system to implement the mutual communication of the services;
  • OLT accessing the network When the user completes the OLT data configuration on the broadband access network management system ANM, the OLT access button is clicked. At this time, the ANM sends a query command to query the OLT for the OLT access information, and the ANM receives the network return from the OLT. The information is reported to the resource management system RMS, and the RMS returns an OLT incoming response message to the ANM, and the ANM informs the OLT of the network access result of the OLT;
  • ONU power-on automatic authorization/configuration procedure When the EPON interface disk EC2 detects the ONU registration information, if the ONU is authorized, the ONU is set according to the configuration in the ROM. If the ONU is not authorized, the EC2 reports the ONU information to the ONU.
  • the EC2 authorizes the ONU.
  • the GSWC configures the temporary VLAN. All the ports of the ONU join the 3998 temporary Internet access VLAN in the UNTAG mode, and deliver the configuration package to the EC2.
  • the EC2 performs the corresponding port configuration.
  • HG network access procedure After the OLT completes the ONU network access process, if the ONU port downlink device is detected as the home gateway HG, the HG registration is initiated. After receiving the HG information, the ANM reports the RMS, and the RMS and the home gateway access control server HG ACS The HG is communicated and the operation result is returned. When the HG network information is reported, the EC2 detects that the ONU port is connected to the HG. If the HG has entered the network, the ECG reports the HG network access information. Reporting HG information in TRAP mode;
  • Voice port activation step The RMS sends a voice port activation message to the ANM, and the ANM sends the message to the OLT; the OLT responds to the voice port activation confirmation message to the ANM, and then the ANM responds to the message to the RMS;
  • Disassemble step The RMS delivers the teardown command message to the ANM, and the ANM sends the teardown command message to the OLT. After receiving the HG teardown command, the OLT returns an error message if the parameter is invalid. If the parameter is valid, configure the ONU and send a configuration command to EC2 to clear the HG in-position information and the network success message. EC2 receives the configuration command and then modifies it. Related configuration, clear HG in-position information and network success message.
  • Voice port deactivation step The RMS sends a voice port deactivation message to the ANM.
  • the ANM sends the message to the OLT.
  • the OLT responds to the voice port to deactivate the confirmation message to the ANM, and then the ANM responds to the message to the RMS.
  • the method of claim 6 further comprising:
  • GSWC adds the fiber to the FTTB port of the building to join the Internet VLAN, IPTV VLAN SIP phone VLAN, 3999 VLAN, ONU white TAG mode to join 3998 VLAN, and the fiber-to-the-home FTTH is changed to transparent transmission. If the HG is changed to PC, GSWC adds the port to the Internet VLAN in UNTAG mode.
  • the GSWC performs related configuration and sends the configuration information to EC2.
  • step (4) Determine whether the new ONU is consistent with the original ONU type. If not, the ONU type mismatch prompt alarm is generated, and the replacement process is ended. If yes, step (4) is performed;
  • the GSWC sends the original ONU's de-authorization command to the EC2, and the original configuration is associated with the new ONU.
  • the backup ONUmac address parameter is cleared, and the configuration is sent to the EC2.
  • the ONU replacement success prompt alarm is generated, and the ONU replacement success event is generated.
  • EC2 is configured accordingly.
  • the ONU configuration failure message is received, an emergency alarm is generated, and the return fails.
  • the ONU network access information TRAP is terminated. If the ONU configuration success message is received, the parameters configured by the ONU are checked. If the parameter is invalid, the system returns. If the parameter is valid, the GSWC configures the port according to the ONU type. All the ports are added to the Internet access VLANs in the UNTAG mode, and the voice parameters are configured, and the configuration packets are sent to the EC2.
  • EC2 After receiving the configuration packet, EC2 performs port configuration according to the following rules.
  • BP Configures the port according to the ONU type. All ports are added to their respective access VLANs in UNTAG mode to configure voice parameters.
  • the GSWC responds successfully to the ANM, and sets the ONU network access flag to 1. End the ONU network access information TRAP and send it to EC2.
  • the invention can effectively reduce the workload of the network maintenance center staff, improve the efficiency of improving the service opening, and the method realizes that the ONU automatically discovers, authorizes and accesses the network, automatically obtains the configuration, and automatically updates the ONU plug-in home gateway device. Identification, ONU teardown, home gateway teardown, ONU cutover and log management, fault management and other functions. DRAWINGS
  • Figure 1 is a flow chart of the OLT network access system
  • Figure 3 is a flow chart of the ONU network access system
  • Figure 5 is a flow chart of the voice port activation/deactivation system
  • Figure 6 is a flow chart of the disassemble system
  • Figure 7 is a process flow of changing the ONU port connection device
  • Figure 8 is the ONU replacement process
  • Figure 9 is a schematic structural view of the system of the present invention.
  • Figure 10 is a schematic diagram of communication between the RMS and the ANM of the present invention.
  • Figure 11 is a schematic view showing the mechanical structure of the bonfire AN5116-02 type OLT device. detailed description
  • the invention can realize the interworking function between the EPON device and the resource system, and the network management and the resource system are connected, and the EPON network management and the resource system cooperate to realize the instant access of the service; after the ONU (IAD) is powered, the network management system communicates with the resource system, semi-automatic ( Manually intervening) Obtain the device IP address (the IP address is uniformly planned by the NGN platform and entered into the resource system before the OLT device goes online); the operator specifies the IAD port to open the voice service through the WEB interface, and all configuration operations are performed by the resource system and the network management system. Communication, cooperation, no manual intervention.
  • the invention can realize the following functions:
  • the device knows the type of service carried by each uplink port, data, voice, and IPTV;
  • the device supports ONU automatic authorization and ONU temporary configuration automatically generated functions
  • the device automatically reports or can receive the network management query OLT access information
  • the device supports the function of automatically reporting the ONU registration information
  • the device can automatically detect the connection status of each port of the authorized ONU, and determine whether the connected device is a pc or a home network management system according to the mac address learned on the port; and automatically perform configuration changes according to different types of downlink devices;
  • the device should be able to identify whether the OLT and the ONU have been successfully connected to the network to avoid repeated network access; the specific embodiments of the present invention are described in detail below with reference to the accompanying drawings.
  • the device can display the current OLT and ONU network access status
  • the device must support the save and hot plug function of each of the above configurations
  • the AN5116-02 device needs to periodically poll the home gateway that is not in the network and initiate network access.
  • FIG. 1 shows the flow chart of the OLT network access system.
  • the OLT access button When the user completes the EPON central office equipment AN5116-02 (OLT device) data configuration on the broadband access network management system ANM, the OLT access button will be clicked, and the ANM will issue the check.
  • the query command queries the OLT for the OLT to access the network information.
  • the ANM After receiving the network information returned by the OLT, the ANM reports the information to the resource management system.
  • the management system, the resource management system RMS returns an OLT incoming response message to the ANM, and the ANM informs the OLT of the network access result of the OLT.
  • 1.0 LT access to the network is only performed when the OLT is first opened or later uplink expansion; 2. If the ANM reports that the OLT has failed to access the network three times, the response sent to the OLT is failed.
  • the OLT generates an emergency alarm; 3.
  • the counter C1 is implemented on the ANM, and the OLT does not need to care
  • Figure 2 is the automatic authorization/configuration process of the ONU power-on.
  • the ONU registration information is detected by the EPON interface disk EC2
  • if the ONU is authorized the ONU is set according to the configuration in the ROM. If the ONU is not authorized, the EC2 reports The ONU information is sent to the main control panel GSWC (including the MAC address, type); GSWC checks whether the PON port is full. If it is full, it will generate a prompt alarm. If it is not full, check whether the slot authorization is full. If the slot authorization is full A notification alarm is generated.
  • the GSW automatically authorizes the ONU and sends the configuration packet to the EC2.
  • the EC2 authorizes the ONU.
  • the GSWC configures the temporary VLAN. All the ports of the ONU join the 3998 temporary Internet access VLAN in the UNTAG mode, and deliver the configuration package to the EC2. , EC2 performs the corresponding port configuration.
  • Figure 3 is a flow chart of the ONU network access system.
  • the ONU reports the ONU network access information to the ANM.
  • the ANM sends the ONU network access information to the RMS.
  • the RMS sends the ONU configuration information to the ANM.
  • the ANM sends the configuration information to the OLT.
  • the OLT returns the configuration execution result to the ANM, and the ANM sends the configuration execution result to the RMS. Note that: (1)
  • the ONU can enter the network only after the OLT is successfully connected to the network. (2)
  • the OLT needs to know whether the newly powered ONU has completed the network access to avoid repeated network access. (3) If the AMN reports ONU access to the network three times, it is unsuccessful.
  • the ONU network access information is reported to the ANM by the GSWC in the TRAP mode after the automatic authorization and temporary configuration of the ONU is completed.
  • the main process is as follows:
  • the GSWC initiates the ONU network access information TRAP;
  • the ONU configuration failure message is received, an emergency alarm is generated, and the return fails.
  • the ONU network access information TRAP is terminated. If the ONU configuration success message is received, the parameters configured by the ONU are checked.
  • the parameters of the ONU configuration include the ONU. Physical location, ONU type, etc.
  • the GSWC configures the port according to the ONU type. All the ports are added to the Internet access VLANs in the UNTAG mode. The voice parameters are configured (the configuration is not required to be sent to the AC16), and the configuration packets are sent to the EC2.
  • the EC2 After receiving the configuration packet, the EC2 configures the port according to the following rules.
  • BP Configures the port according to the ONU type. All the ports are added to their respective access VLANs in the UNTAG mode to configure voice parameters.
  • the GSWC responds to the ANM with the configuration success.
  • the ONU network access flag is set to 1.
  • the ONU network access information TRAP is sent to the EC2.
  • Figure 4 is a flow chart of the HG network entry system. After the OLT device completes the ONU network access process, if the ONU port downlink device is detected as the home gateway HG, the HG registration process is initiated. After receiving the HG information, the ANM reports the resource management system. The resource management system communicates with the access control server ACS and configures the HG, and finally returns the operation result.
  • the EC2 detects that the ONU port is connected to the HG. If the HG is connected to the network, the ECG reports the HG network information. The GSW reports the HG information in the TRAP mode.
  • the process of the OLT processing the HG incoming network response is as follows: The OLT receives the ANM response. If the network access is successful, the HG network access information TRAP is terminated, and the network access result is also sent to the EC2, and the EC2 performs corresponding configuration. If the network access fails, the HG network access information TRAP is terminated. The OLT generates an emergency alert.
  • Figure 5 is a flow chart of the voice port activation/deactivation system.
  • the RMS sends a voice port activation message to the ANM.
  • the ANM sends the message to the OLT.
  • the OLT responds to the voice port activation confirmation message to the ANM, and then the ANM responds to the message to the RMS.
  • the deactivation process is similar to the activation process.
  • FIG. 6 is a flow chart of the teardown system.
  • the HG teardown process is taken as an example to describe the teardown process:
  • the RMS delivers the teardown command message to the ANM, the ANM sends the teardown command message to the OLT, and the OLT receives the HG teardown command. After the parameter is invalid, the error message is returned. If the parameter is valid, the ONU is configured accordingly and sends a configuration command to EC2 to clear the HG in-position information and the network access success message. After receiving the configuration command, EC2 modifies the configuration and clears the HG in place. Information and success messages.
  • Figure 7 shows the change process of the ONU port connection device:
  • HG mac is detected, it is considered to be HG; if polling 3 times does not detect HG mac, it is considered to be PC;
  • Bay IJ GSWC will add the FTTB (Fiber To The Building fiber to the building) port to the Internet VLAN, IPTV VLAN, SIP phone VLAN, 3999 VLAN, ONU automatic TAG mode to join 3998VLAN, FTTH (Fiber) To The Home, PG to PC is changed to transparent transmission; if HG is changed to PC, GSWC adds the port to the Internet VLAN in UNTAG mode;
  • the GSWC performs related configuration and sends the configuration information to EC2.
  • the OLT receives the ONU replacement command from the NMS, and GSWC establishes the correspondence between the new and old ONU mac addresses in the data structure.
  • Figure 8 shows the ONU replacement process
  • EC2 detects the new ONU registration and reports the automatic authorization request
  • step 4 Determine whether the new ONU is the same as the original ONU type. If not, the ONU type mismatch prompt alarm is generated, and the replacement process is ended. If yes, step 4 is performed;
  • Figure 10 is a schematic illustration of the communication between the RMS and ANM of the present invention.
  • Alarm information content ONU fails to enter the network;
  • Alarm additional information EC2 slot Bit number, PON port number, ONU authorization number, ONU MAC address.
  • Alarm cause 1 The communication between ANM and RMS is not smooth. The possible cause is abnormal path and RMS abnormality before ANM and RMS.
  • Cause of alarm 2 The communication between ANM and OLT is not smooth. The possible reason is that communication between ANM and OLT is interrupted.
  • the network access information includes: OLT IP address, EC2 slot number, PON port number, ONU authorization number, ONU type, ONU MAC address, and IAD MAC address.
  • the RMS sends an ONU voice port activation message to the ANM, including: OLT IP address, EC2 slot number, PON port number, ONU authorization number, ONU type, IAD IP address, gateway, mask, and IAD port number.
  • the ANM When the ANM receives the ONU voice port activation message from the RMS, it feeds back to the RMS ONU voice port activation-ACK;
  • the RMS issues a teardown command to the ANM
  • Figure 11 is a mechanical structural view of an AN5116-02 OLT device, including a front view and a rear view.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Data Exchanges In Wide-Area Networks (AREA)
  • Small-Scale Networks (AREA)

Abstract

La présente invention concerne un procédé pour la mise en oeuvre d'une commande de travail automatique dans un réseau optique passif éthernet (EPON), ledit procédé comprenant l'étape de réseautage OLT, l'étape de mise en marche de ONU et d'autorisation/configuration automatique, l'étape de réseautage de ONU, l'étape de réseautage de HG, l'étape d'activation du port vocal et l'étape de suppression ainsi que l'étape de désactivation du port vocal, l'étape de traitement de changement de dispositif de connexion du port de ONU et l'étape de remplacement de ONU. Cette invention porte également sur un système de création d'une commande de travail automatique dans un réseau EPON. Cette invention permet au système de réduire efficacement la charge de travail du personnel du centre de maintenance du réseau et permet au système d'améliorer l'efficacité de l'ouverture du service. Le procédé peut assurer les fonctions de découverte automatique de ONU, d'autorisation automatique de ONU, de réseautage automatique de ONU, d'obtention automatique de configuration de ONU, d'identification automatique du matériel de passerelle domestique enfichable de ONU, de suppression de ONU, de suppression de passerelle domestique, de transfert de ONU et de gestion des enregistrements et des pannes.
PCT/CN2009/073745 2009-01-04 2009-09-04 Procédé et système pour la mise en oeuvre d'une commande de travail automatique dans un réseau optique passif éthernet (epon) Ceased WO2010075702A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN200910076010.2 2009-01-04
CN2009100760102A CN101448184B (zh) 2009-01-04 2009-01-04 在epon中实现自动工单的方法及系统

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WO2010075702A1 true WO2010075702A1 (fr) 2010-07-08

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CN110719235A (zh) * 2018-07-12 2020-01-21 北京亿阳信通科技有限公司 宽带资源调配方法、装置及终端设备
CN111901136A (zh) * 2019-05-06 2020-11-06 烽火通信科技股份有限公司 基于端口替换及路由调整的网管业务批量割接方法和系统
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