WO2012171214A1 - 配置信息的处理方法、无线网络控制器和基站 - Google Patents

配置信息的处理方法、无线网络控制器和基站 Download PDF

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Publication number
WO2012171214A1
WO2012171214A1 PCT/CN2011/075855 CN2011075855W WO2012171214A1 WO 2012171214 A1 WO2012171214 A1 WO 2012171214A1 CN 2011075855 W CN2011075855 W CN 2011075855W WO 2012171214 A1 WO2012171214 A1 WO 2012171214A1
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Prior art keywords
configuration information
base station
identifier
message
network controller
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PCT/CN2011/075855
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English (en)
French (fr)
Inventor
黄白青
Original Assignee
华为技术有限公司
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.)
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Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to CN201180001063.3A priority Critical patent/CN103004255B/zh
Priority to PCT/CN2011/075855 priority patent/WO2012171214A1/zh
Publication of WO2012171214A1 publication Critical patent/WO2012171214A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/02Arrangements for optimising operational condition

Definitions

  • the present invention relates to the field of communications, and in particular, to a method for processing configuration information, a radio network controller, and a base station.
  • the base station packet switching (PS) domain service is offloaded from the 3G base station to the Gbits Interface (GI), and is called the NodeB LBO (NodeB Local BreakOut) scheme.
  • the NodeB LBO solution can save transmission costs above the NodeB on the network side and improve the user experience.
  • the solution has entered the discussion of the 3rd Generation Partnership Project (3GPP) standard, and the interface between the controller and the base station will be expanded.
  • 3GPP 3rd Generation Partnership Project
  • the large-scale, low-value PS domain service is directly offloaded to the Internet through the low-cost transmission method such as digital subscriber line (xDSL, X Digital Subscriber Line) on the NodeB side.
  • this solution can save the transmission cost of the interface Iub between the NodeB and the Radio Network Controller (RNC), and on the other hand, can reduce the delay.
  • RNC Radio Network Controller
  • the NodeB in the traditional network can only parse the data of the Media Access Control (MAC) layer, in order to offload the PS domain service, the NodeB needs to obtain the Radio Link Control (RLC) layer.
  • the configuration information is processed by the RLC layer according to the configuration information to solve the IP data.
  • An existing NodeB LBO solution is to extend the NBAP (NodeB Application Part) message interface between the RNC and the NodeB, and directly add configuration information of the RLC layer, and the RNC configures the NodeB in real time. This means that the RNC side needs to add a new process of sending RLC layer configuration information to the NodeB, and the NodeB needs to newly add processing from the RNC "RLC layer configuration information".
  • NBAP NodeB Application Part
  • the disadvantage of the existing NodeB LBO solution is that the RLC configuration information on the Iub interface consumes a certain transmission bandwidth due to the large RLC configuration information.
  • Embodiments of the present invention provide a method for processing configuration information, a radio network controller, and a base station to reduce transmission bandwidth consumption.
  • the embodiment of the present invention provides a method for processing configuration information, including: the radio network controller acquiring an identifier corresponding to the configuration information;
  • An aspect of the present invention provides a method for processing configuration information, including: receiving, by a base station, an identifier corresponding to configuration information sent by a radio network controller;
  • An embodiment of the present invention provides a radio network controller, including: an identifier obtaining module, configured to acquire an identifier corresponding to configuration information;
  • an identifier sending module configured to send the identifier corresponding to the configuration information to the base station, so that the base station acquires the configuration information according to the identifier.
  • An embodiment of the present invention provides a base station, including: an identifier receiving module, configured to receive an identifier corresponding to configuration information sent by a wireless network controller;
  • the configuration information obtaining module is configured to query the local database according to the configuration information received by the identifier receiving module to obtain the configuration information.
  • the configuration information processing method provided by the embodiment of the present invention reduces the amount of information transmitted on the Iub interface between the radio network controller and the base station by a small amount, which is reduced.
  • the bandwidth usage can increase the utilization of the bandwidth of the system, thereby improving the performance of the entire system.
  • FIG. 1 is a schematic flowchart of a method for processing configuration information according to an embodiment of the present invention
  • FIG. 2-1 is a schematic flowchart of a method for processing configuration information according to another embodiment of the present invention
  • FIG. 2-2 is an interaction between execution entities in a method for processing configuration information according to an embodiment of the present invention.
  • FIG. 3 is a schematic diagram of a logical structure of a radio network controller according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a logical structure of a radio network controller according to another embodiment of the present invention
  • FIG. 5 is a schematic diagram of a logical structure of a base station according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of a logical structure of a base station according to another embodiment of the present invention.
  • Embodiments of the present invention provide a method for processing configuration information, a radio network controller, and a base station, to reduce transmission bandwidth consumption and improve interface compatibility.
  • FIG. 1 is a schematic flowchart of a method for processing configuration information provided by an embodiment of the present invention, which mainly includes the following steps:
  • the radio network controller acquires an identifier corresponding to the configuration information.
  • the configuration information and the identifier of the configuration information may be saved in advance on a radio network controller (RNC) side, and the configuration information and its corresponding identifier are also saved in the base station. (NodeB) - side.
  • RNC radio network controller
  • NodeB base station
  • the radio link control (RLC) layer configuration information is configured with corresponding identifiers, and then the RLC layer configuration information and its corresponding identifier are stored in the RNC-side database, and the RLC layer configuration information and The corresponding identifier is stored in the database on the NodeB side.
  • the radio network controller can query the database on the local side according to the RLC layer configuration information to obtain the identifier corresponding to the RLC layer configuration information.
  • the identifier corresponding to the configuration information may be the number of the configuration information, for example, the number of the configuration information represented by 32 bits (bits).
  • RLC layer configuration information As mentioned above, due to some configuration information, for example, the amount of information of the RLC layer configuration information is large, as shown in Table 1 below is an example of RLC layer configuration information:
  • Receiver window is equal to this value.
  • Receiving RLC entity could allow SDUs to be delivered to the higher layer in
  • UTRAN transmitter window is equal to this value
  • the method provided by the example of the present invention does not directly transmit the configuration information to the base station, but only transmits the identifier corresponding to the configuration information to the base station. Since the base station side also stores the configuration information and the identifier thereof, the base station acquires the configuration information according to the identifier.
  • the base station application part may be
  • the (NBAP, NodeB Application Part) protocol message sends the identifier corresponding to the configuration information to the base station. Since the NBAP protocol is a standard protocol, the method provided by the embodiment of the present invention can improve interface compatibility. Further, the identifier corresponding to the configuration information may be carried in the extended cell of the NBAP protocol message, and the NBAP protocol message carrying the identifier may be sent to the base station.
  • the RNC may obtain an identifier corresponding to the configuration information by querying the database, and carry an identifier corresponding to the configuration information in the extended cell of the radio link setup request message, which will carry
  • the "Radio Link Setup Request" message corresponding to the identifier corresponding to the configuration information is sent to the base station; for example, in the process of re-provisioning the radio link, the RNC can obtain the identifier corresponding to the configuration information by querying the database, and prepare for reconfiguration of the radio link.
  • the extension information of the radio link Reconfig Prepare message carries the identifier corresponding to the configuration information, and carries the identifier corresponding to the configuration information.
  • the "Radio Link Reconfig Prepare” message is sent to the base station.
  • the modification of the lub port standard protocol is limited to the extended cell, and the modified lub interface message can be compatible with the existing standard protocol, so that "the RNC supporting the NodeB Offload vendor, The NodeB device can communicate with the RNC and NodeB devices that do not support NodeB Offload.
  • the method provided by the method further includes sending, to the base station, all the configuration effective moments in the radio link reconfiguration preparation message. Instructions.
  • an indication for indicating all configuration effective times in the radio link reconfiguration preparation message may be used by using a "Radio Link Reconfig Commit" message in the NB AP protocol message. Send to the base station.
  • the extended cell of the Connected Frame Number (CFN) in the "Wireless Link Reconfiguration submission" message exemplified in Table 3 above may be used to indicate all configuration effective times in the radio link reconfiguration preparation message. The moment is also the effective time of the RLC layer configuration.
  • the configuration information processing method provided by the embodiment of the present invention reduces the amount of information transmitted on the Iub interface between the radio network controller and the base station by a small amount, which is reduced.
  • the bandwidth usage can increase the utilization of the bandwidth of the system, thereby improving the performance of the entire system.
  • FIG. 2-1 a flow chart of a method for processing configuration information according to another embodiment of the present invention is shown.
  • - - Figure mainly includes steps:
  • the base station receives an identifier corresponding to the configuration information sent by the radio network controller.
  • the base station queries the local database according to the corresponding identifier to obtain the configuration information.
  • the database on the base station side also stores the same configuration information and the corresponding identifier as the database on the radio network controller side, when the radio network controller sends the identifier corresponding to the configuration information, The base station may query the local database according to the corresponding identifier to obtain the configuration information.
  • the RLC protocol stack is configured accordingly, and the RLC protocol stack can be processed when the user data of the terminal arrives.
  • the identifier corresponding to the configuration information may be carried in the extended cell of the NBAP (NodeB Application Part) protocol message. Specifically, the identifier corresponding to the configuration information may be carried in an extension link of a Radio Link Setup Request message or a Radio Link Reconfiguration Prepare message.
  • the "Radio Link Setup Request" message and its extension cell and “Radio Link Reconfig Prepare” message and its extension cell can be referred to Table 1 and Table 2 in the foregoing embodiment, and are not mentioned here.
  • the base station further receives, by the radio network controller, the radio link reconfiguration preparation message.
  • the CFN extension cell of the "Radio Link Reconfig Commit” message in the NBAP protocol message carries all the configuration effective moments in the radio link reconfiguration preparation message, which is also the RLC layer configuration. The moment of entry into force. "Radio Link Reconfig Commit” and its CFN extension cell can be referred to Table 3 of the foregoing embodiment, and will not be described here.
  • the identifier corresponding to the configuration information received by the base station may be the code of the configuration information.
  • the base station receives only the identifier corresponding to the configuration information, and therefore directly connects with the base station in the prior art.
  • the method for processing configuration information provided by the embodiment of the present invention reduces the amount of information transmitted on the Iub interface between the radio network controller and the base station, reduces the occupation of bandwidth, and can improve the bandwidth of the system. Utilization, which in turn improves overall system performance.
  • 2-2 is a schematic flowchart of interaction between executive entities in a method for processing configuration information according to an embodiment of the present invention, including: - -
  • the radio network controller acquires an identifier corresponding to the configuration information.
  • the configuration information and its corresponding identifier may be configured and saved in advance.
  • the RLC layer configuration information and its identifier may be stored in a database on the side of the radio network controller.
  • the radio network controller can query the database according to the RLC layer configuration information to obtain the RLC configuration information and its corresponding identifier.
  • the identifier corresponding to the configuration information may be a number of the configuration information, for example, a number of configuration information represented by 32 bits.
  • the radio network controller sends an identifier corresponding to the configuration information to the base station.
  • the radio network controller may send an identifier corresponding to the configuration information to the base station through the Iub interface between the radio network controller and the base station.
  • the RNC may obtain an identifier corresponding to the configuration information by querying the database, and carry an identifier corresponding to the configuration information in the extended cell of the "Radio Link Setup Request" message.
  • the "Radio Link Reconfig Prepare” message is sent to the base station (S'2022).
  • the base station acquires configuration information.
  • the database on the base station side also stores the same configuration information and the corresponding identifier as the database on the radio network controller side. Therefore, after the radio network controller sends the identifier corresponding to the configuration information to the base station, The base station may query the local database according to the corresponding identifier to obtain the configuration information. For example, for the "Radio Link Setup Request" message sent by the radio network controller that carries the identifier corresponding to the configuration information, the base station may start the processing of the RLC layer according to the acquired RLC layer configuration information (S, 2031). For example, for the "Radio Link Reconfiguration Prepare” message sent by the radio network controller that carries the identifier corresponding to the configuration information, the base station may start the RLC layer according to the acquired RLC layer configuration information. Required resources (S, 2032).
  • the base station sends a response message to the radio network controller.
  • the base station sends a "Radio Link Setup Request” message sent by the radio network controller carrying the identifier corresponding to the configuration information
  • the base station sends a "Radio Link Setup Response” to the radio network controller (Radio Link Setup Response),, message (S, 2041); for example, the "Radio Link Reconfiguration Prepare” message sent by the radio network controller carrying the identifier corresponding to the configuration information, the base station to the wireless network
  • the controller sends a "Radio Link Reconfig Ready” message (S, 2042).
  • the radio network controller sends a "Radio Link Reconfig Commit" message to the base station.
  • the "Radio Link Reconfig Commit" message sent by the radio network controller to the base station includes a CFN cell indicating "Radio Link Reconfiguration Prepare", The effective time of all configurations in the message, that is, the effective time of the RLC layer configuration.
  • FIG. 3 it is a schematic diagram of a logical structure of a radio network controller according to an embodiment of the present invention. For the convenience of description, only parts related to the embodiment of the present invention are shown.
  • the function module/unit included in the exemplary wireless network controller of FIG. 3 may be a software module/unit, a hardware module/unit or a combination of hardware and software modules/units, including an identifier acquisition module 301 and an identity transmission module 302, where:
  • the identifier obtaining module 301 is configured to obtain an identifier corresponding to the configuration information.
  • the identifier sending module 302 is configured to send the identifier corresponding to the configuration information to the base station, so that the base station acquires the configuration information according to the identifier.
  • each functional module is only an example.
  • the foregoing functions may be considered according to requirements, such as configuration requirements of corresponding hardware or convenience of implementation of software.
  • the assignment is done by different functional modules, ie the internal structure of the radio network controller is divided into different functional modules to perform all or part of the functions described above.
  • the corresponding function module in this embodiment may be implemented by corresponding hardware, or may be executed by corresponding hardware.
  • the foregoing identifier obtaining module may have the foregoing obtaining configuration.
  • the hardware corresponding to the identifier corresponding to the information such as the identifier acquirer, - a general processor or other hardware device capable of executing a corresponding computer program to perform the foregoing functions; and the identifier transmitting module may be configured to send the identifier corresponding to the configuration information to the base station to enable the
  • the hardware that the base station acquires the configuration information function according to the identifier, such as an identifier transmitter, may also be a general processor or other hardware device capable of executing a corresponding computer program to perform the foregoing functions.
  • the identifier sending module 302 is configured to carry the identifier corresponding to the configuration information in the extended cell of the base station application part NBAP protocol message, and the NBAP protocol message carrying the identifier corresponding to the configuration information, for example, a wireless link setup request A message or a radio link reconfiguration preparation message or the like is sent to the base station.
  • the radio network controller of the example of FIG. 3 may further include an indication transmitting module 401, such as the radio network controller provided by another embodiment of the present invention as shown in FIG.
  • the indication sending module 401 is configured to send, to the base station, an indication for indicating all configuration effective moments in the radio link reconfiguration preparation message.
  • FIG. 5 it is a schematic diagram of a logical structure of a base station according to an embodiment of the present invention. For the sake of explanation, only the parts related to the embodiment of the present invention are shown.
  • the base station of the example of Figure 5 includes an identification receiving module 501 and a configuration information acquisition block 502, wherein:
  • the identifier receiving module 501 is configured to receive an identifier corresponding to the configuration information sent by the radio network controller, where the configuration information obtaining module 502 is configured to query the local database corresponding to the configuration information received by the identifier receiving module 501 to obtain the configuration. information.
  • the identifier corresponding to the configuration information received by the identifier receiving module 501 is carried in the extended cell of the NBAP protocol message of the base station application part, and the NBAP protocol message may be a radio link setup request message or a radio link reconfiguration preparation message, and the like. .
  • the base station of the example of FIG. 5 may further include a receiving module 601, such as the base station provided by another embodiment of the present invention as shown in FIG.
  • the indication receiving module 601 is configured to receive an indication that the receiving radio network controller sends to the base station to indicate all configuration effective moments in the radio link reconfiguration preparation message.
  • the program may be stored in a computer readable storage medium, and the storage medium may include: Read Only Memory (ROM), Random Access Memory (RAM), disk or optical disk.
  • ROM Read Only Memory
  • RAM Random Access Memory

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Abstract

本发明实施例提供配置信息的处理方法、无线网络控制器和基站,以减少传输带宽的消耗。所述方法包括:无线网络控制器获取配置信息对应的标识;将所述配置信息对应的标识发送至基站,以使所述基站根据所述标识获取所述配置信息。由于无线网络控制器在本侧获取的只是配置信息对应的标识,并且只是将配置信息对应的标识发送至基站。因此,与现有技术将直接将配置信息发送至基站相比,本发明实施例提供的配置信息的处理方法在无线网络控制器和基站之间的Iub接口上传输的信息量小,减小了对带宽的占用,可以提高系统的带宽的利用率,进而提高整个系统的性能。

Description

一 一 配置信息的处理方法、 无线网络控制器和基站 技术领域
本发明涉及通信领域, 尤其涉及配置信息的处理方法、无线网络控制器和 基站。
背景技术
在无线网络通信系统中, 基站分组交换(Packet Switched, PS )域业务从 3G基站卸载到 G比特接口( GI, Gbits Interface )上,筒称基站本地卸载( NodeB LBO, NodeB Local BreakOut ) 方案。 NodeB LBO方案可以节约网络侧 NodeB 以上的传输成本,提升用户体验。该方案已经进入第三代合作伙伴计划( 3GPP, 3rd Generation Partnership Project )标准的讨论范畴, 控制器和基站的接口将面 临扩展。 以 NodeB Offload产品为例, 针对大量、 低价值的 PS域业务, 在 NodeB 侧通过数字用户线(xDSL, X Digital Subscriber Line )等低成本的传输方式, 被直接卸载到国际互联网络(Internet )上, 这种方案, 一方面可以节约 NodeB 与无线网络控制器( RNC, Radio Network Controller )之间的接口 Iub的传输成 本, 另一方面, 可以减少时延。
由于传统网络中的 NodeB只能解析出媒体接入控制(MAC, Media Access Control )层的数据, 为了将 PS域业务卸载, 就需要 NodeB能够获得无线链路控 制 (RLC, Radio Link Control )层的配置信息, 根据该配置信息进行 RLC层的 处理, 解出 IP数据。 现有的一种 NodeB LBO方案是扩展 RNC和 NodeB之间的基 站应用部分(NBAP, NodeB Application Part ) 消息接口, 直接增加 RLC层的 配置信息, 由 RNC实时地配置给 NodeB。 这意味着 RNC侧需要新增加向 NodeB 发出 RLC层配置信息的处理过程, 而 NodeB需要新增加接收来自 RNC "RLC层 配置信息" 的处理过程。
上述现有 NodeB LBO方案带来的缺陷在于:由于 RLC配置信息较大,在 Iub 口上传递 RLC配置信息将消耗一定的传输带宽。
发明内容
本发明实施例提供配置信息的处理方法、无线网络控制器和基站, 以减少 传输带宽的消耗。 - - 本发明实施例提供一种配置信息的处理方法, 包括: 无线网络控制器获取 配置信息对应的标识;
将所述配置信息对应的标识发送至基站,以使所述基站根据所述标识获取 所述配置信息。
本发明的一方面, 提供了一种配置信息的处理方法, 包括: 基站接收无线 网络控制器发送的配置信息对应的标识;
所述基站根据所述对应的标识查询本端的数据库以获取所述配置信息。 本发明实施例提供一种无线网络控制器, 包括: 标识获取模块, 用于获取 配置信息对应的标识;
标识发送模块, 用于将所述配置信息对应的标识发送至基站, 以使所述基 站根据所述标识获取所述配置信息。
本发明实施例提供一种基站, 包括: 标识接收模块, 用于接收无线网络控 制器发送的配置信息对应的标识;
配置信息获取模块,用于根据所述标识接收模块接收的配置信息对应的查 询本端的数据库以获取所述配置信息。
从上述本发明实施例可知,由于无线网络控制器在本侧获取的只是配置信 息对应的标识, 并且只是将配置信息对应的标识发送至基站。 因此, 与现有技 术将直接将配置信息发送至基站相比,本发明实施例提供的配置信息的处理方 法在无线网络控制器和基站之间的 Iub接口上传输的信息量小, 减小了对带宽 的占用, 可以提高系统的带宽的利用率, 进而提高整个系统的性能。
附图说明
为了更清楚地说明本发明实施例的技术方案,下面将对现有技术或实施例 描述中所需要使用的附图作筒单地介绍,显而易见地, 下面描述中的附图仅仅 是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动 性的前提下, 还可以如这些附图获得其他的附图。
图 1是本发明实施例提供的配置信息的处理方法流程示意图;
图 2-1是本发明另一实施例提供的配置信息的处理方法流程示意图; 图 2-2是本发明实施例提供的配置信息的处理方法中执行主体之间交互的 - - 流程示意图;
图 3是本发明实施例提供的无线网络控制器逻辑结构示意图;
图 4是本发明另一实施例提供的无线网络控制器逻辑结构示意图; 图 5是本发明实施例提供的一种基站逻辑结构示意图;
图 6是本发明另一实施例提供的一种基站逻辑结构示意图。
具体实施方式
本发明实施例提供了配置信息的处理方法、 一种无线网络控制器和基站, 以减少传输带宽的消耗, 提高接口兼容性。
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清 楚、 完整地描述, 显然, 所描述的实施例仅仅是本发明一部分实施例, 而不是 全部的实施例。基于本发明中的实施例, 本领域普通技术人员在没有做出创造 性劳动前提下所获得的所有其他实施例, 都属于本发明保护的范围。
请参阅附图 1 , 是本发明实施例提供的配置信息的处理方法流程示意图, 主要包括步骤:
S101 , 无线网络控制器获取配置信息对应的标识。
在本发明实施例中,可以事先将配置信息及所述配置信息的标识保存于无 线网络控制器( Radio Network Controller, RNC )一侧, 同时, 也将这些配置 信息及其对应的标识保存于基站 (NodeB )—侧。
例如, 将无线链路控制 (Radio Link Control, RLC )层配置信息配置相应 的标识, 然后, 将 RLC层配置信息及其对应的标识保存在 RNC—侧的数据库, 也将 RLC层配置信息及其对应的标识保存在 NodeB—侧的数据库。 当无线网络 控制器需要为终端配发或修改无线资源时,无线网络控制器可以根据 RLC层配 置信息查询本侧的数据库, 以获取 RLC层配置信息对应的标识。 在本发明实施 例中, 配置信息对应的标识可以是配置信息的编号, 例如, 以 32bit (比特)表 示的配置信息的编号。
S102,将配置信息对应的标识发送至基站, 以使所述基站根据所述标识获 - - 取所述配置信息。
如前所述, 由于有些配置信息, 例如, RLC层配置信息的信息量庞大, 如 下表 1为一种 RLC层配置信息的示例:
Information Need Mum Type and reference Semantics description Version Element/Group name
CHOICE Uplink RLC mode OP Indicates if Acknowledged,
Unacknowledged or
Transparent mode RLC
shall be used.
>AM RLC
»Transmission RLC MP Transmission RLC
discard discard 1 0.3.4.25
»Transmission window size MP lnteger(1 , 8,1 6,32,64, Maximum number of RLC
128,256,512,768, 10 PUs sent without getting
24, 1536,2047,2560, them acknowledged. This
3072,3584,4095) parameter is needed if
acknowledged mode is
used. UE shall also
assume that the UTRAN
receiver window is equal to this value.
»Timer_RST MP lnteger(50, 1 00, 150, Elapsed time in
200, 250, 300, 350, milliseconds. It is used to
400, 450, 500, 550, trigger the retransmission
600, 700, 800, 900, of RESET PDU.
1000)
»Max_RST MP lnteger(1, 4, 6, 8, 12 Defined in [1 6]
16, 24, 32)
» Polling info OP Polling info 1 0.3.4.4
>UM RLC
»Transmission RLC OP Transmission RLC
discard discard 1 0.3.4.25
>TM RLC
»Transmission RLC OP Transmission RLC
discard discard 1 0.3.4.25
»Segmentation indication MP Boolean TRUE indicates that
segmentation is
performed.
CHOICE Downlink RLC OP Indicates if Acknowledged, mode Unacknowledged or
Transparent mode RLC - -
Information Need Mum Type and reference Semantics description Version Element/Group name
shall be used
>AM RLC
»CHOICE DL RLC PDU MP REL-7 size
»>Fixed size REL-7
»DL RLC PDU size MP lnteger(1 6..5000 by Unit is bits REL-5 step of 8)
»>Flexible size REL-7
»»Length indicator size MP Enumerated (7-bit, REL-7
15-bit)
»ln-sequence delivery MP Boolean TRUE indicates that RLC
shall preserve the order of higher layer PDUs when these are delivered.
FALSE indicates that
receiving RLC entity could allow SDUs to be delivered to the higher layer in
different order than
submitted to RLC sublayer at the transmitting side.
»Receiving window size MP lnteger(1 , 8,1 6,32,64, Maximum number of RLC
128,256,512,768, 10 PUs allowed to be
24, 1536,2047,2560, received. This parameter is
3072,3584,4095) needed if acknowledged
mode is used. UE shall also assume that the
UTRAN transmitter window is equal to this value
» Downlink RLC status Info MP Downlink RLC status
info
10.3.4.1
>UM RLC
»DL UM RLC LI size MP lnteger(7, 15) Size in bits to use for the REL-5 downlink RLC UM LI.
»DL Reception Window CV-/V lnteger(32, 48, 64, REL-6 Size ot-SIB 80, 96, 1 12)
16o
>TM RLC
»Segmentation indication MP Boolean TRUE indicates that
segmentation is
performed. - -
Figure imgf000008_0001
表 1
本发明例提供的方法不是将配置信息直接传输至基站,而是只向基站传输配置 信息对应的标识。 由于基站侧也保存有这些配置信息及其标识, 因此, 基站根 据所述标识获取所述配置信息。
对于 RLC层配置信息, 作为本发明一个实施例, 可以通过基站应用部分
( NBAP, NodeB Application Part )协议消息将配置信息对应的标识发送至基 站。 由于 NBAP协议是标准协议, 因此, 本发明实施例提供的方法可以提高接 口兼容性。 进一步地, 可以在 NBAP协议消息的扩展信元中携带配置信息对应 的标识, 将携带了所述标识的 NBAP协议消息发送至基站。 例如, 在无线链路 建立的过程中, RNC可以通过查询数据库获得配置信息对应的标识,在无线链 路建立请求( Radio Link Setup Request ) 消息的扩展信元中携带配置信息对应 的标识, 将携带了配置信息对应的标识的 "Radio Link Setup Request" 消息发 送至基站; 又如, 在无线链路重配的过程中, RNC可以通过查询数据库获得配 置信息对应的标识, 在无线链路重配置准备 ( Radio Link Reconfig Prepare )消 息的扩展信元中携带配置信息对应的标识, 将携带了配置信息对应的标识的 IE/Group Name Presence Range IE Type and Semantics Criticality Assigned
Reference Description Criticality
Message Discriminator M 9.2.1 .45 -
Message Type M 9.2.1 .46 YES reject
Transaction I D M 9.2.1 .62 -
Node B Communication M 9.2.1 .48 The reserved YES reject Context ID value "All
NBCC" shall
not be used.
UL DPCH Information 0..1 YES reject
>UL Scrambling Code 〇 9.2.2.59 -
>UL SI R Target 〇 UL SIR ―
9.2.1 .67A
>Min UL Channelistion 〇 9.2.2.22 ―
Code Length
>Max Number of UL C-CodeLe 9.2.2.21 ―
DPDCHs n
> Puncture Limit 〇 9.2.1 .50 For UL -
>TFCS 〇 9.2.1 .58 -
>UL DPCCH Slot 〇 9.2.2.57 ―
Format
> Diversity Mode 〇 9.2.2.9 -
>Not Used 〇 NULL -
>Not Used 〇 NULL -
>UL DPDCH Indicator 〇 9.2.2.61 YES reject For E-DCH Operation
DL DPCH Information 0..1 YES reject
>TFCS 〇 9.2.1 .58 -
>DL DPCH Slot Format 〇 9.2.2.10 -
>TFCI Signalling Mode 〇 9.2.2.50 -
>TFCI Presence C-SlotFor 9.2.1 .57 ―
mat
>Multiplexing Position 〇 9.2.2.23 -
>Not Used 〇 NULL -
>Not Used 〇 NULL -
>Limited Power 〇 9.2.2.18A ―
Increase
>DL DPCH Power 0..1 YES reject Information
» Power Offset 1 ―
Information
»>P01 M Power Offset Power offset for ―
9.2.2.29 the TFCI bits - -
»>P02 M Power Offset Power offset for ―
9.2.2.29 the TPC bits
»>P03 M Power Offset Power offset for
9.2.2.29 the pilot bits
»FDD TPC DL Step M 9.2.2.16 ―
Size
»lnner Loop DL PC M 9.2.2.18B ―
Status
DCHs To Modify 〇 DCHs FDD YES reject
To Modify
9.2.2.4E
DCHs To Add 〇 DCH FDD YES reject
Information
9.2.2.4D
DCHs To Delete 0..<ma GLOBAL reject xnoofD
CHs>
>DCH I D M 9.2.1 .20 -
RL Information 0..<ma EACH reject xnoofR
Ls>
>RL I D M 9.2.1 .53 -
>DL Code Information 〇 FDD DL
Code
Information
9.2.2.14A
>Maximum DL Power 〇 DL Power Maximum
9.2.1 .21 allowed power
on DPCH or on
F-DPCH
>Minimum DL Power 〇 DL Power Minimum
9.2.1 .21 allowed power
on DPCH or on
F-DPCH
>Not Used 〇 NULL -
>Not Used 〇 NULL -
>Transmit Diversity C-Diversit 9.2.2.53 ―
Indicator y mode
>DL Reference Power 〇 DL Power Powsr on YES ignore
9.2.1 .21 DPCH or on
F-DPCH
>RL Specific DCH 〇 9.2.1 .53G YES ignore Information
>DL DPCH Timing 〇 9.2.2.1 OA Required RL YES reject - -
Adjustment Timing
Adjustment
>Primary CPICH 〇 9.2.2.33A YES ignore Usage For Channel
Estimation
>Secondary CPICH 〇 9.2.2.43A YES ignore Information Change
>E-DCH RL Indication 〇 9.2.2.13De YES reject
>RL Specific E-DCH 〇 9.2.2.39a YES ignore Information
Transmission Gap 〇 9.2.2.53A YES reject Pattern Sequence
Information
Signalling Bearer 〇 9.2.1 .55A YES reject Request Indicator
HS-DSCH Information 〇 HS-DSCH YES reject
FDD
Information
9.2.2.18D
HS-DSCH Information 〇 9.2.1 .31 H YES reject To Modify
HS-DSCH MAC-d Flows 〇 HS-DSCH YES reject To Add MAC-d
Flows
Informations
.2.1 .31 IA
HS-DSCH MAC-d Flows 〇 9.2.1 .31 IB YES reject To Delete
HS-DSCH-RNTI C-HSDSC 9.2.1 .31 J YES reject
HRadioLi
nk
HS-PDSCH RL ID 〇 RL ID YES reject
9.2.1 .53
E-DPCH Information 0..1 YES reject
>Maximum Set of 〇 9.2.2.20C ―
E-DPDCHs
> Puncture Limit 〇 9.2.1 .50 -
>E-TFCS Information 〇 9.2.2.13Dh -
>E-TTI 〇 9.2.2.13Di -
>E-DPCCH Power 〇 9.2.2.13Dj ―
Offset
>E-RGCH 〇 9.2.2.13lg ―
2-lndex-Step - -
Figure imgf000012_0001
表 2
"Radio Link Reconfig Prepare" 消息发送至基站。
由于在扩展信元中携带配置信息对应的标识, 对 lub口标准协议的修改仅 限于扩展信元, 修改后的 lub口消息能够和和现有标准协议兼容, 使得 "支持 NodeB Offload厂家的 RNC、 NodeB设备" 和 "不支持 NodeB Offload的 RNC、 NodeB设备" 之间能够互通。
上述表 2给出了 "Radio Link Reconfig Prepare" 消息的子消息 "FDD - -
Message" 的一种示例。 在上述表 2所示消息中, 标注为 "Not Used" 对应的栏 目就是可利用的扩展信元, 可以将配置信息对应的标识填写在其中后,将这些 填写了配置信息对应的标识的消息发送至基站。
对于 NBAP协议消息为无线链路重配置准备( Radio Link Reconfig Prepare ) 消息的实施例,本发明提供的方法还包括向基站发送用于指示所述无线链路重 配置准备消息中所有配置生效时刻的指示。作为本发明一个实施例, 可以通过 利用 NB AP协议消息中的 "无线链路重配置提交 ( Radio Link Reconfig Commit )" 消息, 将用于指示无线链路重配置准备消息中所有配置生效时刻的 指示发送至基站。 如下表 3所示,
Figure imgf000013_0001
表 3
可通过上述表 3示例的 "无线链路重配置提交" 消息中连接帧号 (Connected Frame Number, CFN )这一扩展信元携带用于指示无线链路重配置准备消息中 所有配置生效时刻, 该时刻也是 RLC层配置的生效时刻。
从上述本发明实施例可知,由于无线网络控制器在本侧获取的只是配置信 息对应的标识, 并且只是将配置信息对应的标识发送至基站。 因此, 与现有技 术将直接将配置信息发送至基站相比,本发明实施例提供的配置信息的处理方 法在无线网络控制器和基站之间的 Iub接口上传输的信息量小, 减小了对带宽 的占用, 可以提高系统的带宽的利用率, 进而提高整个系统的性能。
请参阅附图 2-1 , 本发明另一实施例提供的配置信息的处理方法流程示意 - - 图, 主要包括步骤:
5201 , 基站接收无线网络控制器发送的配置信息对应的标识。
5202 , 基站根据对应的标识查询本端的数据库以获取所述配置信息。 在本发明实施例中,由于基站一侧的数据库也保存了与无线网络控制器一 侧的数据库同样的配置信息及其对应的标识, 因此, 当无线网络控制器发送配 置信息对应的标识时,基站可以根据对应的标识, 查询本端的数据库以获取所 述配置信息。 基站得到该配置信息后, 据此配置 RLC协议栈, 当终端的用户数 据到达后即可进行 RLC协议栈的处理。
在本发明一个实施例中, 配置信息对应的标识可以携带在基站应用部分 ( NBAP, NodeB Application Part )协议消息的扩展信元中。 具体地, 可以将 配置信息对应的标识携带在无线链路建立请求( Radio Link Setup Request ) 消 息或者无线链路重配置准备( Radio Link Reconfig Prepare )消息的扩展信元中。 "Radio Link Setup Request" 消息及其扩展信元和 "Radio Link Reconfig Prepare" 消息及其扩展信元可参阅前述实施例中的表 1和表 2, 此处不做赞述。
进一步地,对于配置信息对应的标识携带在 "Radio Link Reconfig Prepare" 消息的扩展信元中这一实施例,基站还接收无线网络控制器发送的用于指示所 述无线链路重配置准备消息中所有配置生效时刻的指示。 可在 NBAP协议消息 中的 "无线链路重配置提交(Radio Link Reconfig Commit )" 消息的 CFN扩展 信元携带用于指示无线链路重配置准备消息中所有配置生效时刻,该时刻也是 RLC层配置的生效时刻。 "Radio Link Reconfig Commit" 消及其 CFN扩展信元 可参阅前述实施例的表 3 , 此处不做赞述。
在本实施例中,基站接收的配置信息对应的标识可以是所述配置信息的编 从上述本发明实施例可知, 由于基站接收的只是配置信息对应的标识, 因 此, 与现有技术中基站直接接收配置信息相比, 本发明实施例提供的配置信息 的处理方法在无线网络控制器和基站之间的 Iub接口上传输的信息量小, 减小 了对带宽的占用, 可以提高系统的带宽的利用率, 进而提高整个系统的性能。
请参阅附图 2-2, 是本发明实施例提供的配置信息的处理方法中执行主体 之间交互的流程示意图, 包括: - -
S'201, 无线网络控制器获取配置信息对应的标识。
在本实施例中, 配置信息及其对应的标识可事先配置好并保存, 例如, 对 于 RLC层配置信息,可将 RLC层配置信息及其标识保存于无线网络控制器一侧 的数据库。 当无线网络控制器需要为终端配发或修改无线资源时, 无线网络控 制器可以根据 RLC层配置信息查询数据库,以获取 RLC配置信息及其对应的标 识。 在本发明实施例中, 配置信息对应的标识可以是配置信息的编号, 例如, 以 32bit (比特)表示的配置信息的编号。
S'202, 无线网络控制器将配置信息对应的标识发送至基站。
在本实施例中, 无线网络控制器可以通过其与基站之间的 Iub口将配置信 息对应的标识发送至基站。 例如, 在无线链路建立的过程中, RNC可以通过查 询数据库获得配置信息对应的标识, 在 "无线链路建立请求(Radio Link Setup Request )" 消息的扩展信元中携带配置信息对应的标识, 将携带了配置信息对 应的标识的 "无线链路建立请求( Radio Link Setup Request )" 消息发送至基站 ( S'2021 ); 又如, 在无线链路重配的过程中, RNC可以通过查询数据库获得 配置信息对应的标识,在 "无线链路重配置准备( Radio Link Reconfig Prepare )" 消息的扩展信元中携带配置信息对应的标识,将携带了配置信息对应的标识的 "无线链路重配置准备 ( Radio Link Reconfig Prepare )" 消息发送至基站 ( S'2022 )。
S'203 , 基站获取配置信息。
在本实施例中,基站一侧的数据库也保存了与无线网络控制器一侧的数据 库同样的配置信息及其对应的标识, 因此, 当无线网络控制器发送配置信息对 应的标识给基站后,基站可以根据对应的标识, 查询本端的数据库以获取所述 配置信息。例如,对于无线网络控制器发送的携带了配置信息对应的标识的 "无 线链路建立请求( Radio Link Setup Request )" 消息, 基站可以根据获取的 RLC 层配置信息启动 RLC层的处理(S,2031 ); 又如, 对于无线网络控制器发送的 携带了配置信息对应的标识的 "无线链路重配置准备 ( Radio Link Reconfig Prepare )" 消息, 基站可以根据获取的 RLC层配置信息, 启动 RLC层的所需资 源 (S,2032 )。
S'204, 基站向无线网络控制器发送响应消息。 - - 例如,对于无线网络控制器发送的携带了配置信息对应的标识的 "无线链 路建立请求(Radio Link Setup Request )"消息,基站向无线网络控制器发送 "无 线链路建立响应( Radio Link Setup Response ),, 消息( S,2041 ); 又如, 对于无 线网络控制器发送的携带了配置信息对应的标识的 "无线链路重配置准备 ( Radio Link Reconfig Prepare )" 消息, 基站向无线网络控制器发送 "无线链 路重配置准备完成( Radio Link Reconfig Ready )" 消息( S,2042 )。
S'205 , 无线网络控制器向基站发送 "无线链路重配置提交(Radio Link Reconfig Commit ),, 消息。
无线网络控制器向基站发送的 "无线链路重配置提交( Radio Link Reconfig Commit )"消息中包含了 CFN信元,该信元指示了 "无线链路重配置准备( Radio Link Reconfig Prepare ),, 消息中所有配置的生效时刻, 也就是 RLC层配置的生 效时刻。
请参阅附图 3 , 是本发明实施例提供的无线网络控制器逻辑结构示意图。 为了便于说明, 仅仅示出了与本发明实施例相关的部分。 附图 3示例的无线网 络控制器包含的功能模块 /单元可以是软件模块 /单元、硬件模块 /单元或软硬件 相结合模块 /单元, 包括标识获取模块 301和标识发送模块 302, 其中:
标识获取模块 301 , 用于获取配置信息对应的标识。
标识发送模块 302, 用于将所述配置信息对应的标识发送至基站, 以使所 述基站根据所述标识获取所述配置信息。
需要说明的是, 以上无线网络控制器的实施方式中,各功能模块的划分仅 是举例说明, 实际应用中可以根据需要, 例如相应硬件的配置要求或者软件的 实现的便利考虑, 而将上述功能分配由不同的功能模块完成, 即将所述无线网 络控制器的内部结构划分成不同的功能模块,以完成以上描述的全部或者部分 功能。 而且, 实际应用中, 本实施例中的相应的功能模块可以是由相应的硬件 实现,也可以由相应的硬件执行相应的软件完成,例如,前述的标识获取模块, 可以是具有执行前述获取配置信息对应的标识的硬件,例如标识获取器,也可 - - 以是能够执行相应计算机程序从而完成前述功能的一般处理器或者其他硬件 设备; 再如前述的标识发送模块, 可以是具有执行前述将所述配置信息对应的 标识发送至基站, 以使所述基站根据所述标识获取所述配置信息功能的硬件, 例如标识发送器,也可以是能够执行相应计算机程序从而完成前述功能的一般 处理器或者其他硬件设备。
具体地, 标识发送模块 302用于在基站应用部分 NBAP协议消息的扩展 信元中携带配置信息对应的标识,将所述携带了配置信息对应的标识的 NBAP 协议消息, 例如, 无线链路建立请求消息或无线链路重配置准备消息等, 发送 至所述基站。
附图 3示例的无线网络控制器还可以包括指示发送模块 401 , 如附图 4所示 本发明另一实施例提供的无线网络控制器。 指示发送模块 401 , 用于向基站发 送用于指示无线链路重配置准备消息中所有配置生效时刻的指示。
请参阅附图 5, 是本发明实施例提供的一种基站逻辑结构示意图。 为了便 于说明, 仅仅示出了与本发明实施例相关的部分。 附图 5示例的基站包括标识 接收模块 501和配置信息获耳 ^莫块 502, 其中:
标识接收模块 501 ,用于接收无线网络控制器发送的配置信息对应的标识; 配置信息获取模块 502,用于根据所述标识接收模块 501接收的配置信息对 应的查询本端的数据库以获取所述配置信息。
具体地, 标识接收模块 501接收的配置信息对应的标识携带在基站应用部 分 NBAP协议消息的扩展信元中, 而 NBAP协议消息可以为无线链路建立请求 消息或无线链路重配置准备消息等等。
附图 5示例的基站还可以包括指示接收模块 601 , 如附图 6所示本发明另一 实施例提供的基站。 指示接收模块 601用于接收接收无线网络控制器向基站发 送的用于指示无线链路重配置准备消息中所有配置生效时刻的指示。
需要说明的是, 上述装置各模块 /单元之间的信息交互、 执行过程等内容, - - 由于与本发明方法实施例基于同一构思,其带来的技术效果与本发明方法实施 例相同, 具体内容可参见本发明方法实施例中的叙述, 此处不再赘述。
本领域普通技术人员可以理解上述实施例的各种方法中的全部或部分步 骤是可以通过程序来指令相关的硬件来完成,该程序可以存储于一计算机可读 存储介质中, 存储介质可以包括: 只读存储器(ROM, Read Only Memory ) 、 随机存取存储器(RAM, Random Access Memory ) 、 磁盘或光盘等。
以上对本发明实施例提供的配置信息处理方法、无线网络控制器和基站进 行了详细介绍, 本文中应用了具体个例对本发明的原理及实施方式进行了阐 述, 以上实施例的说明只是用于帮助理解本发明的方法及其核心思想; 同时, 对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围 上均会有改变之处, 综上所述, 本说明书内容不应理解为对本发明的限制。

Claims

权 利 要 求
1、 一种配置信息的处理方法, 其特征在于, 所述方法包括:
无线网络控制器获取配置信息对应的标识;
将所述配置信息对应的标识发送至基站,以使所述基站根据所述标识获取 所述配置信息。
2、 如权利要求 1所述的方法, 其特征在于, 所述将所述配置信息对应的标 识发送至基站包括:
通过基站应用部分 NBAP协议消息将所述配置信息对应的标识发送至所 述基站。
3、 如权利要求 2所述的方法, 其特征在于, 所述通过基站应用部分 NBAP 协议消息将所述配置信息对应的标识发送至所述基站包括:
在所述 NBAP协议消息的扩展信元中携带所述配置信息对应的标识, 将所 述携带了所述标识的 NBAP协议消息发送至所述基站。
4、 如权利要求 2或 3所述的方法, 其特征在于, 所述 NBAP协议消息为无 线链路建立请求消息或者无线链路重配置准备消息。
5、 如权利要求 4所述的方法, 其特征在于, 所述 NBAP协议消息为无线链 路重配置准备消息, 所述方法还包括:
所述无线网络控制器向所述基站发送用于指示所述无线链路重配置准备 消息中的配置生效时刻的指示。
6、 如权利要求 1至 5任意一项所述的方法, 其特征在于, 所述配置信息为 无线链路控制层配置信息,所述配置信息对应的标识为所述无线链路控制层配 置信息的编号。
7、 一种配置信息的处理方法, 其特征在于, 所述方法包括:
基站接收无线网络控制器发送的配置信息对应的标识;
所述基站根据所述对应的标识查询本端的数据库以获取所述配置信息。
8、 如权利要求 7所述的方法, 其特征在于, 所述配置信息对应的标识携带 在基站应用部分 NBAP协议消息的扩展信元中。
9、 如权利要求 8所述的方法, 其特征在于, 所述 NBAP协议消息为无线链 路建立请求消息或者无线链路重配置准备消息。
10、 如权利要求 9所述的方法, 其特征在于, 所述方法还包括:
所述基站接收所述无线网络控制器向所述基站发送的用于指示所述无线 链路重配置准备消息中所有配置生效时刻的指示。
11、 一种无线网络控制器, 其特征在于, 所述无线网络控制器包括: 标识获取模块, 用于获取配置信息对应的标识;
标识发送模块, 用于将所述配置信息对应的标识发送至基站, 以使所述基 站根据所述标识获取所述配置信息。
12、 如权利要求 11所述的无线网络控制器, 其特征在于, 所述标识发送 模块具体用于在所述基站应用部分 NBAP协议消息的扩展信元中携带所述配 置信息对应的标识, 将所述携带了所述标识的 NBAP协议消息发送至所述基 站, 所述 NBAP协议消息为无线链路建立请求消息或无线链路重配置准备消
13、 如权利要求 12所述的无线网络控制器, 其特征在于, 所述无线网络 控制器还包括:
指示发送模块,用于向基站发送用于指示所述无线链路重配置准备消息中 所有配置生效时刻的指示。
14、 一种基站, 其特征在于, 所述基站包括:
标识接收模块, 用于接收无线网络控制器发送的配置信息对应的标识; 配置信息获取模块,用于根据所述标识接收模块接收的配置信息对应的查 询本端的数据库以获取所述配置信息。
15、 如权利要求 14所述的基站, 其特征在于, 所述配置信息对应的标识携 带在基站应用部分 NBAP协议消息的扩展信元中。
16、 如权利要求 15所述的基站, 其特征在于, 所述 NBAP协议消息为无线 链路建立请求消息或无线链路重配置准备消息。
17、 如权利要求 11所述的基站, 其特征在于, 所述基站还包括: 指示接收模块,用于接收所述无线网络控制器向所述基站发送的用于指示 所述无线链路重配置准备消息中所有配置生效时刻的指示。
PCT/CN2011/075855 2011-06-17 2011-06-17 配置信息的处理方法、无线网络控制器和基站 WO2012171214A1 (zh)

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