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WO2006128370A1 - A method for banding the transmission line and the device thereof - Google Patents

A method for banding the transmission line and the device thereof Download PDF

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Publication number
WO2006128370A1
WO2006128370A1 PCT/CN2006/001142 CN2006001142W WO2006128370A1 WO 2006128370 A1 WO2006128370 A1 WO 2006128370A1 CN 2006001142 W CN2006001142 W CN 2006001142W WO 2006128370 A1 WO2006128370 A1 WO 2006128370A1
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WO
WIPO (PCT)
Prior art keywords
rate
transmission
transmission line
module
binding
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/CN2006/001142
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English (en)
French (fr)
Inventor
Haijun Wu
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.)
Huawei Technologies Co Ltd
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Huawei Technologies Co Ltd
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Filing date
Publication date
Application filed by Huawei Technologies Co Ltd filed Critical Huawei Technologies Co Ltd
Priority to EP06742030A priority Critical patent/EP1746804A4/en
Priority to US11/628,600 priority patent/US8275006B2/en
Publication of WO2006128370A1 publication Critical patent/WO2006128370A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L25/00Baseband systems
    • H04L25/02Details ; arrangements for supplying electrical power along data transmission lines
    • H04L25/14Channel dividing arrangements, i.e. in which a single bit stream is divided between several baseband channels and reassembled at the receiver
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L45/00Routing or path finding of packets in data switching networks
    • H04L45/24Multipath
    • H04L45/245Link aggregation, e.g. trunking
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q2213/00Indexing scheme relating to selecting arrangements in general and for multiplex systems
    • H04Q2213/13039Asymmetrical two-way transmission, e.g. ADSL, HDSL
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q2213/00Indexing scheme relating to selecting arrangements in general and for multiplex systems
    • H04Q2213/13208Inverse multiplexing, channel bonding, e.g. TSSI aspects
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/50Reducing energy consumption in communication networks in wire-line communication networks, e.g. low power modes or reduced link rate

Definitions

  • the present invention relates to the field of network communication technologies, and in particular, to a transmission line binding method and apparatus. Background of the invention
  • the user interface board of the broadband access device based on digital subscriber line (xDSL) technology can provide different access modes, for example: Asymmetric Digital Subscriber Line (ADSL), Very High Speed Digital Subscriber Line (VDSL), Ethernet One or more of access methods such as network and single-line pair high-speed digital subscriber line (G.shdsl).
  • a broadband access device can provide multiple user interface boards.
  • Another approach currently used is to provide higher bandwidth by bundling multiple lines: providing multiple pairs of lines simultaneously for a single user, while also increasing the speed of each pair of lines.
  • the transmission rate of each pair of lines needs to be set to be the same.
  • DSL technology is affected by different factors such as: radio waves, environmental humidity, or other factors that cause changes in line impedance, balance to the ground, etc., so that the same source point to the same destination point
  • the activation rate of each pair of lines is somewhat discrete, and therefore, is provided to the same remote user from the same central office.
  • the activation rate of xDSL for multiple pairs of lines may be different, so that it is not possible to simply bind the multiple pairs of lines to provide bandwidth for the user. Summary of the invention
  • the present invention provides a transmission line bonding method and apparatus for implementing binding of lines with inconsistent rates and providing users with higher transmission bandwidth.
  • a transmission line binding method comprising:
  • A. Determine a transmission rate supported by each transmission line to be bound
  • the step A includes:
  • Al obtaining the current activation rate of each transmission line that is activated and to be bound; A2, selecting the lowest activation rate among the current activation rates of each transmission line, and using the lowest activation rate as the transmission rate supported by each transmission line.
  • the activation rate includes: an uplink activation rate and a downlink activation rate of the transmission line.
  • the transmission line is: a digital subscriber line transmission line.
  • the step B includes:
  • Each transmission line is activated to the simultaneously supported transmission rate according to a rate template of a transmission rate supported by each transmission line to be bound, and then each transmission line is bound.
  • a transmission line binding device comprising:
  • a rate reselection module selecting a transmission rate supported by each transmission line to be bound, and transmitting the transmission rate
  • Re-activating the module setting a transmission rate of each transmission line to be bound to a transmission rate sent by the rate reselection module, and transmitting the binding indication; After receiving the binding indication sent by the reactivation module, the binding module binds each transmission line to be bound.
  • the rate reselection module mainly includes: an uplink activation rate reselection module and a downlink activation rate reselection module, where:
  • An uplink activation rate reselection module configured to select a lowest uplink activation rate in an uplink activation rate of each to-be-bound transmission line after the activation of the to-be-bound transmission line, and then send the lowest uplink activation rate to the re-activation module;
  • the downlink activation rate reselection module is configured to select a lowest downlink activation rate among the downlink activation rates of the to-be-bound transmission lines after the transmission lines to be bound are activated, and then send the lowest downlink activation rate to the reactivation module.
  • the device further includes:
  • the binding sending module is configured to save a binding sending rule of the device, select a transmission line for the to-be-sent service according to the binding sending rule, and then send the service from the selected transmission line to the peer device.
  • the binding receiving module is configured to save a binding sending rule of the peer device, and receive the service sent by the peer device according to the binding sending rule.
  • the reactivation module is located in a hardware processing unit of the broadband access device.
  • the rate reselection module is located in a software processing unit or a hardware processing unit of the broadband access device.
  • the present invention first determines the transmission rate supported by each transmission line to be bound, and then activates each transmission line to the simultaneously supported transmission rate, and finally binds each transmission line, thereby realizing
  • the transmission rates of transmission lines with different transmission rates are negotiated to the same transmission rate, and since the transmission rates of the transmission lines are the same, the bundled transmission lines can provide users with higher bandwidth.
  • FIG. 1 is a flowchart of a transmission line binding according to an embodiment of the present invention
  • FIG. 2 is a block diagram of a device for binding a transmission line according to an embodiment of the present invention
  • FIG. 3 is a second block diagram of a device for binding a transmission line according to an embodiment of the present invention.
  • FIG. 4 is a third block diagram of a device for binding a transmission line according to an embodiment of the present invention.
  • Mode for Carrying Out the Invention The core idea of the present invention is: First, determine the transmission rate supported by each transmission line at the same time, and then activate each transmission line to the simultaneously supported transmission rate, and finally bind the transmission lines. '
  • FIG. 1 is a flowchart of a transmission line binding according to an embodiment of the present invention. As shown in FIG. 1 , the specific steps are as follows:
  • Step 101 The user terminal is powered on, and each line between the user terminal and the broadband access device is activated.
  • the line interface provided by the broadband access device for the same user may be: DSL interface such as: ADSL, VDSL, ADSL+ and other interfaces and Ethernet interfaces such as FE, GE, etc., each of which corresponds to its own activation. Rate, the activation rate of each line may not be exactly the same.
  • Step 102 The broadband access device obtains an uplink activation rate and a downlink activation rate of each line.
  • Step 103 The broadband access device selects a lowest uplink activation rate and a lowest downlink activation rate among the obtained uplink and downlink activation rates of each line.
  • Step 104 The broadband access device re-activates the uplink and downlink rates of each line to the lowest uplink activation rate and the lowest downlink activation rate according to the lowest uplink activation rate and the lowest downlink activation rate rate template.
  • Step 105 The broadband access device binds the lines together.
  • each line is bound, when the broadband access device or the user terminal sends data, it can select a line in the bound line according to a preset binding rule, and send the data packet to the selected line to the
  • the peer device receives the service sent by the sending device according to the binding rule adopted by the sending device.
  • the uplink and downlink between the user terminal and the broadband access device may adopt the same binding rule or different binding rules.
  • the user terminal must save the binding rule of the downlink to receive the service sent by the broadband access device according to the binding rule.
  • the broadband access device must save the binding rule of the uplink to follow the binding rule. Receive the service from the user terminal. For example: Let there be four DSL lines between the user terminal and the broadband access device, which are numbered as lines 1, 2, 3, and 4.
  • the line carries out data transmission, that is: when the first data packet is sent by the user terminal, the line 1 is used for transmission, when the second data packet is sent, the line 2 is used for transmission, and so on; correspondingly, the broadband access device is receiving the user
  • the data packet sent by the terminal is received, the data packet on the line 1 needs to be received first, then the data packet on the line 2 is received, and so on, thereby ensuring the orderly and reliable reception of the data packet.
  • FIG. 2 is a block diagram of a device for binding a transmission line according to an embodiment of the present invention. As shown in FIG. 2, the method mainly includes: a rate reselection module 21, a reactivation module 22, and a binding module 23, where:
  • the rate reselection module 21 is configured to select a transmission rate supported by each line to be bound according to a transmission rate supported by each line to be bound, and send the transmission rate to the reactivation module 22.
  • the reactivation module 22 is configured to set the transmission rate of each to-be-bound line to the transmission rate sent by the rate selection module 21, and then send a binding indication to the binding module 23.
  • Binding module 23 used to receive the binding indication sent by the reactivation module 22 Bind the line for binding.
  • the rate reselection module 21 mainly includes: an uplink activation rate reselection module 211 and a downlink activation rate reselection module 212, where:
  • the uplink activation rate reselection module 211 is configured to: after each transmission line to be bound is activated, select a lowest uplink activation rate in an uplink activation rate of each to-be-bound transmission line, and then send the lowest uplink activation rate to the reactivation module. 212.
  • the downlink activation rate reselection module 212 is configured to select a lowest downlink activation rate among the downlink activation rates of the transmission lines after each transmission line is activated, and then send the lowest downlink activation rate to the reactivation module 212.
  • the reactivation module 212 is configured to reactivate the uplink and downlink rates of each to-be-bound line to the lowest uplink and downlink activation rate sent by the rate selection module 21, and then send a binding indication to the binding module 23.
  • the reactivation module 22 is usually located in a hardware processing unit of the broadband access device, and the rate selection module 21 may be located in a software processing unit of the broadband access device or in a hardware processing unit of the broadband access device.
  • FIG. 4 is a block diagram 3 of a device for binding a transmission line according to an embodiment of the present invention. As shown in FIG. 3, the figure further includes: a binding sending module 24 and a binding receiving module 25, where:
  • the binding sending module 24 is configured to save a binding sending rule of the device. After receiving the binding completion indication sent by the binding module 23, if the data packet is sent, the binding rule is sent according to the binding of the device. The packet to be sent selects the transmission line and then sends the packet from the selected line to the peer device.
  • the binding receiving module 25 is configured to save the binding sending rule of the peer device, and after receiving the binding completion indication sent by the binding module 23, according to the binding sending rule of the peer device, the receiving peer device sends the binding device. Packet.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Power Engineering (AREA)
  • Data Exchanges In Wide-Area Networks (AREA)
  • Telephonic Communication Services (AREA)
  • Communication Control (AREA)

Description

传输线路绑定方法和装置
技术领域
本发明涉及网络通信技术领域, 尤其涉及一种传输线路绑定方法和 装置。 发明背景
目前, 基于数字用户线(xDSL )技术的宽带接入设备的用户接口板 可提供不同的接入方式, 例如: 可提供非对称数字用户线 (ADSL ) 、 甚高速数字用户线(VDSL )、以太网、单线对高速数字用户线(G.shdsl ) 等接入方式中的一种或多种。 且, 一个宽带接入设备可以提供多个用户 接口板。
随着各种 xDSL技术面向高带宽、 高速率方向的发展, 对 xDSL线路 的带宽及速率要求将越来越高。 为了满足上述需要, 目前采用的一种方 法是持续提高单线对上的速率, 同时还通过额外增加高频点来增加传输 带宽。 但是, 按照传送理论, 频带越高意味着衰减越快, 因此, 在距离 较长时数据传输主要依赖的还是原有的频带较低的信号, 这样产生的结 果是: xDSL线路的可菽得带宽随着线路长度的增加反而大大降低。
目前采用的另一种方法是通过将多条线路绑定来提供更高的带宽 即: 为一个用户同时提供多对线路, 同时还可以将各对线路的速率进行 提高。但为保证多对线路绑定,需要将各对线路的传输速率设置为相同。 但 DSL技术在实际应用中, 由于不同因素的影响如: 无线电波、 环境潮 湿、 或其它会导致线路阻抗、 对地平衡度等产生变化的因素等, 使得对 于从同一源点到同一目的点的多对长度相同的线路, 各对线路的激活速 率存在一定的离散性, 因此, 在从同一个局端提供给同一个远端用户的 多对线路的 xDSL的激活速率可能不同,这样就无法简单地将该多对线路 绑定后为用户提供带宽。 发明内容
有鉴于此, 本发明提供一种传输线路绑定方法和装置, 以实现速率 不一致的线路的绑定, 并为用户提供更高的传输带宽。
本发明的技术方案是这样实现的:
一种传输线路绑定方法, 该方法包括:
A、 确定各待绑定的传输线路同时支持的传输速率;
B、 将各待绑定传输线路激活到所述同时支持的传输速率上, 然后 绑定各传输线路。
所述步據 A包括:
Al、 获取已激活、 且待绑定的各传输线路的当前激活速率; A2、在各传输线路的当前激活速率中选择最低激活速率, 将该最低 激活速率作为各传输线路同时支持的传输速率。
所述激活速率包括: 传输线路的上行激活速率和下行激活速率。 所述传输线路为: 数字用户线传输线路。
所述步骤 B包括:
根据各待绑定传输线路同时支持的传输速率的速率模板, 将各传输 线路激活到所述同时支持的传输速率上, 然后将各传输线路绑定。
一种传输线路绑定装置, 该装置包括:
速率重选择模块, 选择各待绑定传输线路同时支持的传输速率, 将 该传输速率发送出去;
重激活模块, 将各待绑定传输线路的传输速率设定到速率重选择模 块发来的传输速率上, 并将绑定指示发送出去; 绑定模块, 在收到重激活模块发来的绑定指示后, 将各待绑定传输 线路进行绑定。
所述速率重选择模块主要包括: 上行激活速率重选择模块和下行激 活速率重选择模块, 其中:
上行激活速率重选择模块, 用于在各待绑定传输线路激活后, 在各 待绑定传输线路的上行激活速率中选择最低上行激活速率, 然后将该最 低上行激活速率发送到重激活模块;
下行激活速率重选择模块, 用于在各待绑定传输线路激活后, 在各 待绑定传输线路的下行激活速率中选择最低下行激活速率, 然后将该最 低下行激活速率发送到重激活模块。
所述装置进一步包括:
绑定发送模块, 用于保存自身设备的绑定发送规则, 根据该绑定发 送规则 , 为待发送业务选择传输线路, 然后将业务从选定的传输线路上 发送到对端设备。
绑定接收模块, 用于保存对端设备的绑定发送规则, 根据该绑定发 送规则, 接收对端设备发来的业务。
所述重激活模块位于宽带接入设备的硬件处理单元中。
所述速率重选择模块位于宽带接入设备的软件处理单元或硬件处理 单元中。
与现有技术相比, 本发明首先确定各待绑定的传输线路同时支持的 传输速率, 然后将各传输线路激活到所述同时支持的传输速率上, 最后 绑定各传输线路, 实现了将传输速率不完全相同的传输线路的传输速率 协商到同一传输速率, 且由于各传输线路的传输速率相同, 从而使得绑 定后的传输线路可为用户提供更高的带宽。 附图简要说明
图 1为本发明实施例提供的传输线路绑定的流程图;
图 2为本发明实施例提供的传输线路绑定的装置框图一;
图 3为本发明实施例提供的传输线路绑定的装置框图二;
图 4为本发明实施例提供的传输线路绑定的装置框图三。 实施本发明的方式 本发明的核心思想是: 首先确定各传输线路同时支持的传输速率, 然后将各传输线路都激活到该同时支持的传输速率上, 最后将各传输线 路绑定。 '
图 1是本发明实施例提供的传输线路绑定的流程图, 如图 1所示, 其 具体步骤如下:
步驟 101 : 用户终端上电, 用户终端与宽带接入设备间的各条线路 激活。
宽带接入设备为同一用户提供的线路接口可以是: DSL接口如: ADSL, VDSL, ADSL+等接口和以太网接口如: FE、 GE等接口中的任 意组合, 每条线路分别对应着各自的激活速率, 各线路的激活速率可能 不完全相同。
步骤 102: 宽带接入设备获得各线路的上行激活速率和下行激活速 率。
步骤 103: 宽带接入设备在获得的各线路的上、 下行激活速率中选 择最低上行激活速率和最低下行激活速率。
步骤 104: 宽带接入设备按照最低上行激活速率和最低下行激活速 率的速率模板分别将各线路的上、 下行速率都重新激活到最低上行激活 速率和最低下行激活速率上。 步骤 105: 宽带接入设备将各线路绑定到一起。
各线路绑定后, 宽带接入设备或用户终端在发送数据时, 就可按照 预先设定的绑定规则, 在绑定的线路中选择一条线路, 将数据包通过该 选定的线路发送到对端设备, 之后对端设备根据发送端设备采用的绑定 规则, 接收发送端设备发来的业务。
这里, 用户终端与宽带接入设备间的上行线路和下行线路可以采用 相同的绑定规则, 也可以采用不同的绑定规则。 但是, 用户终端必须保 存下行线路的绑定规则, 以按照该绑定规则接收宽带接入设备发来的业 务; 同时, 宽带接入设备必须保存上行线路的绑定规则, 以按照该绑定 规则接收用户终端发来的业务。 例如: 设用户终端与宽带接入设备间有 四条 DSL线路, 分别编号为线路 1、 2、 3、 4, 将该四条线路绑定后, 将 上行线路的绑定规则设置为: 循环使用各条线路进行数据传输, 即: 用 户终端发送第一个数据包时, 采用线路 1进行传输, 发送第二个数据包 时采用线路 2进行传输, 依此类推; 对应地, 宽带接入设备在接收用户 终端发来的数据包时, 也需要先接收线路 1上的数据包, 再接收线路 2上 的数据包, 依此类推, 从而保证数据包的有序、 可靠接收。
图 2是本发明实施例提供的传输线路绑定的装置框图一, 如图 2所 示, 其主要包括: 速率重选择模块 21、 重激活模块 22和绑定模块 23, 其 中:
速率重选择模块 21 : 用于根据各待绑定线路支持的传输速率, 选择 各待绑定线路同时支持的 输速率, 将该传输速率发送给重激活模块 22。
重激活模块 22: 用于将各待绑定线路的传输速率设定到速率选择模 块 21发来的传输速率上, 然后向绑定模块 23发送绑定指示。
绑定模块 23: 用于在收到重激活模块 22发来的绑定指示后, 将各待 绑定线路进行绑定。
进一步地, 如图 3所示, 速率重选择模块 21主要包括: 上行激活速 率重选择模块 211和下行激活速率重选择模块 212, 其中:
上行激活速率重选择模块 211: 用于在各待绑定传输线路激活后, 在各待绑定传输线路的上行激活速率中选择最低上行激活速率, 然后将 该最低上行激活速率发送到重激活模块 212。
下行激活速率重选择模块 212: 用于在各传输线路激活后, 在各传 输线路的下行激活速率中选择最低下行激活速率, 然后将该最低下行激 活速率发送到重激活模块 212。
具体地, 重激活模块 212用于将各待绑定线路的上、 下行速率重新 激活到速率选择模块 21发来的最低上、 下行激活速率上, 然后向绑定模 块 23发送绑定指示。
在实际应用中, 重激活模块 22通常位于宽带接入设备的硬件处理单 元中, 速率选择模块 21可位于宽带接入设备的软件处理单元中, 也可位 于宽带接入设备的硬件处理单元中。
图 4是本发明实施例提供的传输线路绑定的装置框图三, 如图 3所 示, 该图与图 2相比, 进一步包括: 绑定发送模块 24和绑定接收模块 25 , 其中:
绑定发送模块 24: 用于保存自身设备的绑定发送规则 , 在收到绑定 模块 23发来的绑定完成指示后, 若要发送数据包, 则根据自身设备的绑 定发送规则, 为待发送数据包选择传输线路, 然后将数据包从选定的线 路上发送到对端设备。
绑定接收模块 25: 用于保存对端设备的绑定发送规则 , 在收到绑定 模块 23发来的绑定完成指示后, 根据对端设备的绑定发送规则, 接收对 端设备发来的数据包。 以上所述仅为本发明的过程及方法实施例, 并不用以限制本发明, 凡在本发明的精神和原则之内所做的任何修改、 等同替换、 改进等, 均 应包含在本发明的保护范围之内。

Claims

权利要求书
1、 一种传输线路绑定方法, 其特征在于, 该方法包括:
A、 确定各待绑定的传输线路同时支持的传输速率;
B、 将各待绑定传输线路激活到所述同时支持的传输速率上, 然后 绑定各传输线路。 '
2、 如权利要求 1所述的方法, 其特征在于, 所述步戳 A包括: Al、 获取已激活、 且待绑定的各传输线路的当前激活速率;
A2、 在各传输线路的当前激活速率中选择最低激活速率, 将该最低 激活速率作为各传输线路同时支持的传输速率。
3、 如权利要求 2所述的方法, 其特征在于, 所述激活速率包括: 传 输线路的上行激活速率和下行激活速率。
4、 如权利要求 1所述的方法, 其特征在于, 所述传输线路为: 数字 用户线传输线路。
5、 如权利要求 1所述的方法, 其特征在于, 所述步骤 B包括: 根据各待绑定传输线路同时支持的传输速率的速率模板, 将各传输 线路激活到所述同时支持的传输速率上, 然后将各传输线路绑定。
6、 一种传输线路绑定装置, 其特征在于, 该装置包括:
速率重选择模块, 选择各待绑定传输线路同时支持的传输速率, 将 该传输速率发送出去;
重激活模块, 将各待绑定传输线路的传输速率设定到速率重选择模 块发来的传输速率上, 并将绑定指示发送出去;
绑定模块, 在收到重激活模块发来的绑定指示后, 将各待绑定传输 线路进行绑定。
7、 如权利要求 6所述的装置, 其特征在于, 所述速率重选择模块主 要包括: 上行激活速率重选择模块和下行激活速率重选择模块, 其中: 上行激活速率重选择模块, 用于在各待绑定传输线路激活后, 在各 待绑定传输线路的上行激活速率中选择最低上行激活速率, 然后将该最 低上行激活速率发送到重激活模块;
下行激活速率重选择模块, 用于在各待绑定传输线路激活后, 在各 待绑定传输线路的下行激活速率中选择最低下行激活速率, 然后将该最 低下行激活速率发送到重激活模块。
8、 如权利要求 6所述的装置, 其特征在于, 所述装置进一步包括: 绑定发送模块, 用于保存自身设备的绑定发送规则, 根据该绑定发 送规则, 为待发送业务选择传输线路, 然后将业务从选定的传输线路上 发送到对端设备。
绑定接收模块, 用于保存对端设备的绑定发送规则, 根据该绑定发 送规则, 接收对端设备发来的业务。
9、 如权利要求 6所述的装置, 其特征在于, 所述重激活模块位于宽 带接入设备的硬件处理单元中。
10、 如权利要求 6所述的装置, 其特征在于, 所述速率重选择模块 位于宽带接入设备的软件处理单元或硬件处理单元中。
PCT/CN2006/001142 2005-05-30 2006-05-29 A method for banding the transmission line and the device thereof Ceased WO2006128370A1 (en)

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EP06742030A EP1746804A4 (en) 2005-05-30 2006-05-29 BAND STRUCTURING METHOD OF THE TRANSMISSION LINE AND CORRESPONDING DEVICE
US11/628,600 US8275006B2 (en) 2005-05-30 2006-05-29 Method and apparatus for binding transmission lines

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