WO2011124172A2 - 一种网络配置处理方法、装置和无线网络控制器 - Google Patents

一种网络配置处理方法、装置和无线网络控制器 Download PDF

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Publication number
WO2011124172A2
WO2011124172A2 PCT/CN2011/073949 CN2011073949W WO2011124172A2 WO 2011124172 A2 WO2011124172 A2 WO 2011124172A2 CN 2011073949 W CN2011073949 W CN 2011073949W WO 2011124172 A2 WO2011124172 A2 WO 2011124172A2
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Prior art keywords
access network
cell
macro cell
universal access
user equipment
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PCT/CN2011/073949
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English (en)
French (fr)
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WO2011124172A3 (zh
Inventor
王怡韵
高珑珑
姚瑶
徐斌
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华为技术有限公司
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Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to EP11765090.3A priority Critical patent/EP2709403A4/en
Priority to PCT/CN2011/073949 priority patent/WO2011124172A2/zh
Priority to CN201180001197.5A priority patent/CN102884836B/zh
Publication of WO2011124172A2 publication Critical patent/WO2011124172A2/zh
Publication of WO2011124172A3 publication Critical patent/WO2011124172A3/zh
Priority to US14/076,443 priority patent/US9526013B2/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W16/00Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
    • H04W16/24Cell structures
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0083Determination of parameters used for hand-off, e.g. generation or modification of neighbour cell lists
    • H04W36/00835Determination of neighbour cell lists
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0083Determination of parameters used for hand-off, e.g. generation or modification of neighbour cell lists
    • H04W36/00837Determination of triggering parameters for hand-off
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0083Determination of parameters used for hand-off, e.g. generation or modification of neighbour cell lists
    • H04W36/0085Hand-off measurements
    • 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
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0083Determination of parameters used for hand-off, e.g. generation or modification of neighbour cell lists
    • H04W36/0085Hand-off measurements
    • H04W36/0094Definition of hand-off measurement parameters
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/14Reselecting a network or an air interface

Definitions

  • the embodiments of the present invention relate to the field of communications technologies, and in particular, to a network configuration processing method, apparatus, and radio network controller. Background technique
  • Unlicensed Mobile Access UMA
  • GAN Generic Access Network
  • GANC Generic Access Network
  • EGANC Generic Access Network
  • the core network can simultaneously use one of the A / Gb port, Iu_cs, Iu-ps port One or more, and establish a connection with the MSC, SGSN or 3A proxy/server (AAA Proxy/server) to support coverage of the GSM/GPRS/UMTS access network.
  • the mobile terminal can also support one or several of the GAN A/Gb mode and the GAN Iu mode.
  • the mobile terminal needs to have two transceivers to measure the GERAN/UTRAN and GAN cells respectively.
  • GANC/EGANC is an ordinary base station subsystem (Base Station Subsystem, BSS for short) or radio network controller (Radio Network).
  • BSS Base Station Subsystem
  • Radio Network Radio Network
  • Con t ro ll er hereinafter referred to as: RNC)
  • the architecture does not affect the core network process, where GANC/EGANC is a unified controller for multiple GAN/EGAN cells, and one GANC/EGANC corresponds to multiple GAN/ EGAN community.
  • the existing intra-frequency neighboring cell or the different-system neighboring cell configuration usually establishes a mapping relationship with the current cell in units of cells.
  • the access network element of the GAN network it can be regarded as logical in the Iu mode.
  • the UMTS network element can be regarded as a logical GSM network element in the A/Gb mode, and the number of access network elements of the GAN may be much larger than the number of macro cells.
  • a large number of logical UMTSs need to be separately configured.
  • the neighboring area or the GSM neighboring area makes the configuration of the UMTS network and the GAN neighboring network very complicated, which increases the workload of network management and configuration work. Summary of the invention
  • the embodiment of the invention provides a network configuration processing method, device and a radio network controller, which are used to effectively reduce the complexity of configuring the neighbor network of the macro network and the GAN network.
  • An aspect of the present invention provides a network configuration processing method, including: establishing a neighbor relationship between a macro cell and a universal access network cell, where the neighbor relationship is a radio network controller and a universal access network of the macro cell. a neighboring cell corresponding relationship between the common access network controllers of the cell, where two or more of the universal access network cells share a common access network controller; in the occurrence of the user equipment from the macro cell to the universal access network When the cell is handed over, the measurement control message is sent to the user equipment according to the neighbor relationship between the macro cell and the universal access network cell.
  • Another aspect of the present invention provides a network configuration processing apparatus, including: a neighboring cell establishing module and a switching processing module.
  • a neighboring cell establishing module configured to establish a neighboring cell relationship between the macro cell and the universal access network cell, where the neighboring cell relationship is a radio network controller of the macro cell and a universal access network controller of the universal access network cell
  • the neighboring cell correspondence relationship, two or more of the universal access network cells share a common access network controller.
  • a handover processing module configured to: when the user equipment occurs from the macro cell to the universal access network cell When the handover is performed, the measurement control message is sent to the user equipment according to the neighbor relationship between the macro cell and the universal access network cell.
  • Another aspect of the present invention also provides a radio network controller including the above network configuration processing apparatus.
  • the network configuration processing method, apparatus, and radio network controller provided by the embodiments of the present invention establish a neighboring relationship with the RNC of the macro cell by using a GANC as a unit when establishing a neighbor relationship between the macro cell and the universal access network cell.
  • the relationship between the area and the neighboring area of the RNC in the macro cell is relatively small, and the number of correspondences is small, which can effectively reduce the complexity of the network configuration of the UMTS, LTE, and the GAN network.
  • FIG. 2 is a schematic flowchart of a GAN neighbor network configuration processing method according to an embodiment of the present invention
  • FIG. 3 is a schematic structural diagram of a GAN neighbor network configuration processing apparatus according to another embodiment of the present invention. detailed description
  • FIG. 2 is a schematic flowchart of a GAN neighbor network configuration processing method according to an embodiment of the present invention.
  • the macro network may be a network such as UMTS or LTE.
  • the radio network controller establishes a neighbor relationship between the macro cell and the universal access network cell.
  • the neighbor relationship is a neighbor relationship between the RNC of the macro cell and the GANC of the cell of the universal access network, and specifically, may be established according to the scrambling code, the frequency point number, the network color code, the base station color code, etc. of the GANC.
  • the macro cell may be a cell of a type such as a UMTS cell or an LTE cell, and when establishing a neighbor relationship between the macro cell and the universal access network cell, For example, the neighboring relationship between the RNC and the GANC may be established, and usually multiple (for example, at least two, or at least three) GAN cells share one GANC.
  • the measurement control message is sent to the user equipment according to the neighbor relationship between the macro cell and the universal access network cell.
  • the radio network controller sends measurement control to the user equipment according to the neighbor relationship between the macro cell and the universal access network cell.
  • the message for example, performs handover between the macro cell and the universal access network cell according to the neighbor relationship.
  • the method for processing a neighboring network configuration of a universal access network provided by the foregoing embodiment of the present invention, wherein when establishing a neighbor relationship between each macro cell and a cell of a general access network, establishing an RNC with a macro cell in units of GANC.
  • the neighboring cell relationship because in the actual universal access network, multiple common access network cells share one GANC, therefore, in this embodiment, the neighboring cell relationship with the RNC is established in units of GANC, with respect to universal access.
  • the network cell establishes a neighbor relationship with the RNC of the macro cell, and the number of corresponding relationships is small, which can effectively reduce the complexity of the network configuration of the UMTS, LTE, and the GAN network, and reduce the workload of network management and configuration work.
  • the GANC can be divided into an Iu mode and an A/Gb mode.
  • the measurement control message sent by the GANC to the user equipment is an intra-frequency measurement control message;
  • the measurement control message sent by the GANC to the user equipment is a 3A measurement control message.
  • the relationship between the RNC and the GANC is further set to a supplementary blind mode or an unloaded mode, wherein the complementary blind mode may be a weak coverage signal set in the UMTS network.
  • the GANC of the area plays a complementary role to the UMTS cell; and the unloading mode may be to set the GANC in the home, the area covered by the GANC may not be the weaker coverage area of the UMTS network, but the access of the user equipment may be lower.
  • the handover of the user equipment from the macro cell to the GAN cell may occur in both areas.
  • the neighboring GANC of the macro cell can be configured as "A/Gb Budding Mode", "A/Gb Unload Mode", "Iu Budding Mode” and "Iu Unload Mode".
  • the measurement control message when the measurement control message is sent to the user equipment, the user equipment is only in the active area of the user equipment (for example, the macro cell with the best signal quality) exists in the active area.
  • the measurement control message is sent, and the neighboring area of the best macro cell is measured, that is, the measurement control message is sent according to the neighbor relationship between the macro cell and the universal access network cell in the foregoing embodiment, which is specifically: according to each macro cell and The neighboring cell relationship between the cells of the universal access network, when determining that the current best macro cell is configured with the neighboring GANC, sending a measurement control message to the user equipment, where the measurement control message is used to indicate that the user equipment is to the best macro cell.
  • the neighboring GANC performs measurements.
  • the current best macro cell When it is determined that the current best macro cell is configured with the neighboring GANC, it is processed according to the type of the neighboring GANC, and specifically includes the following content.
  • the current macro cell signal difference event waiting to be received by the user equipment is reported, and only the current macro cell signal of the user equipment is received.
  • the switching capability of the user equipment, the current service type of the user equipment, the service type supported by the target universal access network, and the switching capability of the radio network controller of the source macro cell and the home network thereof are further determined.
  • the combination of one or several items determines whether to send a measurement control message to the user equipment, where the current macro cell signal difference event may be a 2D event according to the 3GPP TS25.33 protocol, that is, the user equipment detects the received signal quality in real time, when When the received signal quality is below a certain threshold, an indication signal of the signal difference is returned to the radio network controller.
  • the current macro cell signal difference event may be a 2D event according to the 3GPP TS25.33 protocol, that is, the user equipment detects the received signal quality in real time, when When the received signal quality is below a certain threshold, an indication signal of the signal difference is returned to the radio network controller.
  • the target universal access network cell supports the service type currently being performed by the user equipment, and the radio network controller of the source macro cell and the core network to which it belongs Supporting the handover of the user equipment from the macro cell to the universal access network cell, determining to generate a measurement control message, and transmitting the measurement control message to the user equipment to measure the neighboring GANC of the best macro cell.
  • the sent measurement control message is a 3A measurement control message
  • the sent measurement control message is an intra-frequency measurement control message
  • the 2D event reporting and the 3A measurement control message in the embodiment of the present invention may be performed according to the 3GPP TS25.33 protocol.
  • the 2D event reported by the user equipment indicates that the user equipment is currently in a poor signal environment and needs to perform network switching.
  • This GAN network with complementary mode is suitable for use in some environments where UMTS network coverage is poor.
  • the 2D event reporting is no longer waited, but the switching capability of the user equipment, the current service type of the user equipment, and the target universal access network cell support are directly supported.
  • the combination of one or more of the type of service and the handover capability of the radio network controller of the source macro cell and its home core network determines whether to send a measurement control message to the user equipment.
  • the target universal access network cell supports the service type currently being performed by the user equipment, and the radio network controller of the source macro cell and the core network to which it belongs
  • the user equipment is switched from the macro cell to the universal access network cell, it is determined to generate a measurement control message, and the foregoing measurement control message is sent to the user equipment.
  • the measurement control message is sent to the 3A measurement control message.
  • the sent measurement control message is an intra-frequency measurement control message.
  • the unloading mode may be to deploy the GAN network for the home or office area.
  • the measurement control message may be sent directly to the user equipment to notify the user equipment to perform measurement on the GAN network.
  • the introduction of the uninstall mode can enrich the application scenario of the GAN network.
  • the RNC performs the measurement control on the neighboring cells of all the macro cells in the active set, and the RNC in the UMTS network only indicates the user equipment when the measurement control message is sent.
  • the measurement of the neighboring area of the best macro cell in the active set can effectively reduce the impact of the introduction of the GAN cell on the existing handover performance during the interoperation between the UMTS and the GAN network.
  • the validity period of the measurement control message in this embodiment refers to activation.
  • the centralized macro cell changes, specifically for the technical solution of the present invention, allowing the user equipment to activate the best macro cell in the centralized handover to the neighboring cell, and the measurement control message is also indicating that the user equipment is adjacent to the best macro cell. The measurement is performed on the area. Therefore, if the macro cell does not change, the content of the measurement control message sent to the user equipment will be the same. It is not necessary to send the measurement control message. In this embodiment, the foregoing determination can be avoided. Repeated delivery of measurement control messages.
  • the embodiment of the present invention further provides a network configuration processing device, which may be set in a radio network controller of a macro cell
  • FIG. 3 is a GAN according to another embodiment of the present invention.
  • the apparatus includes a neighboring cell establishing module 11 and a handover processing module 12, wherein the neighboring cell establishing module 11 is configured to establish a neighboring cell between the macro cell and the universal access network cell.
  • the neighbor relationship is a macro cell a neighboring cell correspondence between the radio network controller and the universal access network controller of the universal access network cell, and two or more of the universal access network cells share a common access network controller;
  • the measurement control message is sent to the user equipment according to the neighbor relationship between the macro cell and the universal access network cell.
  • the universal access network neighbor network configuration processing apparatus provided in the foregoing embodiment of the present invention, wherein when establishing a neighbor relationship between each macro cell and a universal access network cell, establishing an RNC with the macro cell in units of GANC.
  • the neighboring cell relationship because in the actual universal access network, multiple common access network cells share one GANC. Therefore, in this embodiment, the neighboring cell relationship with the RNC is established in units of GANC, as compared with the universal access.
  • the network cell establishes a neighbor relationship with the RNC of the macro cell, and the number of corresponding relationships is small, which can effectively reduce the complexity of the network configuration of the UMTS, LTE, and the GAN network, and reduce the workload of network management and configuration work.
  • the switching processing module 12 in the foregoing embodiment of the present invention may specifically include a determining unit 21 and a message sending unit 22, where the determining unit 21 is configured to determine the current best according to the neighbor relationship between the macro cell and the universal access network cell. Whether the macro cell is configured with a neighboring universal access network controller; the message sending unit 22 is configured to send a measurement control message to the user equipment when determining that the current best macro cell is configured with the neighboring universal access network controller, the measurement control message And configured to instruct the user equipment to perform measurement on a neighboring universal access network controller of the best macro cell.
  • the measurement control message is sent only to the neighboring cell of the best macro cell in the active set, and the measurement control message is sent to the neighboring cells of all the macro cells in the active set in the prior art, which can effectively reduce the UMTS.
  • the GAN cell introduces an impact on the existing handover performance.
  • the type of the neighboring universal access network controller of the best macro cell is different, and different types of measurement control messages may be sent to the user equipment, that is, the message sending unit 22 may include the first message sending subunit 221 or the first a second message sending subunit 222, wherein the first message sending subunit 221 is configured to use the Iu mode in the neighboring universal access network controller of the best macro cell.
  • the device And transmitting, by the user equipment, an intra-frequency measurement control message, where the measurement control message is used to indicate that the user equipment performs measurement on the neighboring universal access network controller of the best macro cell; and the second message sending sub-unit 222 is configured to
  • the neighboring universal access network controller of the best macro cell is in the A/Gb mode
  • the device sends a 3A measurement control message to the user equipment, where the measurement control message is used to indicate that the user equipment is adjacent to the best macro cell.
  • the access network controller performs measurements.
  • the type of the neighboring GANC may be further divided into an unloading mode and a supplemental blind mode, wherein the supplemental blind mode is for a GANC that may be set in a weaker area of the UMTS network coverage signal, and functions as a UMTS cell.
  • the measurement control of the GAN cell may be triggered when the detected signal is weak; the unloading mode may be the deployment of the GAN network for the home or office area, and the user equipment enters the GAN network area from the UMTS cell, possibly the UMTS cell.
  • the signal is still strong, but users want to use the GAN network in the area to achieve the effect of reducing tariffs.
  • the universal access network neighbor network configuration processing apparatus may further include a first message generating subunit 223 or a second message generating subunit 224, and a third message transmitting subunit.
  • the first message generating sub-unit 223 is configured to use a complementary blind source mode between the source macro cell where the handover occurs and the universal access network controller to which the target universal access network cell belongs, and receive the current macro cell signal.
  • the difference event (for example, the 2D event specified by the 3GPP TS25.33 protocol), according to the handover capability of the user equipment, the current service type of the user equipment, the service type supported by the target universal access network, and the radio network controller of the source macro cell
  • the combination of one or more of the switching capabilities of the home network to which it belongs is determined to generate a measurement control message.
  • the second message generating sub-unit 224 is configured to perform an offload mode between the source macro cell in which the handover occurs and the universal access network controller to which the target universal access network cell belongs, directly according to the switching capability of the user equipment, and the current current of the user equipment.
  • the combination of one or more of the service type, the service type supported by the target universal access network cell, and the handover capability of the radio network controller of the source macro cell and its belonging core network determines to generate a measurement control message; a message sending subunit, configured to send the measurement control message to a user equipment.
  • the embodiment of the invention further provides a wireless network controller of a macro network, and the wireless network control
  • the controller includes the network configuration processing device in the above embodiment.
  • the network configuration processing method and device and the radio network controller provided by the foregoing embodiments of the present invention, wherein when the neighboring cell configuration of the macro cell and the GAN cell is performed, the neighbor relationship between the two is established in units of GANC.
  • the complexity of the network configuration of the UMTS, the LTE network and the GAN network for the neighbor network can be effectively reduced, and the workload of the network management and configuration work is reduced.
  • the measurement control message is sent only to the neighboring GANC of the best macro cell in the active set, which can effectively reduce the interoperation between the UMTS and the GAN network.
  • the introduction of the uninstallation mode enriches the business application scenario, and the deployment of the GAN network is more flexible.

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

Abstract

本发明提供一种网络配置处理方法、装置和无线网络控制器。该方法包括:建立宏小区与通用接入网小区之间的邻区关系,所述邻区关系为宏小区的无线网络控制器与通用接入网小区的通用接入网控制器之间的邻区对应关系,两个以上的所述通用接入网小区共享一个通用接入网控制器(101);在发生用户设备从所述宏小区到通用接入网小区的切换时,根据所述宏小区与通用接入网小区之间的邻区关系向所述用户设备发送测量控制消息(102)。本发明还提供了相应的装置以及无线网络控制器。本发明能够有效降低UMTS、LTE等网络与GAN网络进行邻网络配置的复杂度,减少网络管理和配置工作的工作量。

Description

一种网络配置处理方法、 装置和无线网络控制器 技术领域
本发明实施例涉及通信技术领域, 尤其涉及一种网络配置处理方法、 装置和无线网络控制器。 背景技术
非授权移动接入 ( Unlicensed Mobile Access, 简称: UMA ) 技术由 多家业界领先的运营商和供应商联合发起,其目的是为了能开发和颁布一 组标准、 来扩展 GSM/GPRS 中的移动语音和数据能够在不需要执照的频谱 技术(如蓝牙和无线局域网)中使用,可以实现移动语音和数据从手机网络 到无线局域网(WLAN/WiFi)的无缝转移。 其中, 基于通用接入网 (Generic Access Network, 以下简称: GAN ) 的 UMTS/GAN互操作在 3GPP Rel6中标 准化, 并在 Rel7、 Rel8继续深化。
图 1为现有技术中 GAN/EGAN架构图,其中移动终端( mob i le s tat ion, 以下简称: MS) 通过无线局域网络(Wireless Local Area Networks, 以 下简称: WLAN)、 蓝牙 ( bluetooth ) 等作为接入与通用接入网控制器 ( Generic Access Network, 以下简称: GANC ) /EGANC建立 IP连接, GANC/EGANC和核心网之间可以同时采用 A/Gb口、 Iu_cs、 Iu-ps口中的一 种或几种, 并与 MSC、 SGSN或 3A代理 /服务器 ( AAA Proxy/server ) 建立 连接, 以支持 GSM/GPRS/UMTS接入网的覆盖。 同时, 移动终端也可以支持 GAN A/Gb模式和 GAN Iu模式中的一种或几种。 为了支持 GAN模式, 移动 终端需要有两个收发信器, 分别对 GERAN/UTRAN和 GAN小区进行测量。 从 核心网的角度, GANC/EGANC就是一个普通的基站子系统模( Base Station Subsystem, 以下简称: BSS ) 或者无线网络控制器(Radio Network Con t ro l l er , 以下简称: RNC) , 该架构不会对核心网的流程产生影响, 其 中 GANC/EGANC为多个 GAN/EGAN小区的统一的控制器, 一个 GANC/EGANC 对应多个 GAN/EGAN小区。
现有的同频邻区或者异系统邻区配置通常是以小区为单位建立与当 前小区的映射关系, 对于 GAN网络的接入网元而言, 其在 I u模式下可视 作逻辑上的 UMTS网元, A/Gb模式下则可视作逻辑上的 GSM网元, 且 GAN 的接入网元数目可能远远大于宏小区的数目, 对于一个宏小区, 需要分别 配置大量逻辑上的 UMTS邻区或者 GSM邻区, 使得 UMTS网络与 GAN邻网络 的配置变得十分复杂, 增加了网络管理和配置工作的工作量。 发明内容
本发明实施例提供一种网络配置处理方法、 装置和无线网络控制器, 用以有效降低宏网络与 GAN网络进行邻网络配置的复杂度。
本发明的一方面提供了一种网络配置处理方法, 包括: 建立宏小区与 通用接入网小区之间的邻区关系, 所述邻区关系为宏小区的无线网络控制 器与通用接入网小区的通用接入网控制器之间的邻区对应关系, 两个以上 的所述通用接入网小区共享一个通用接入网控制器; 在发生用户设备从所 述宏小区到通用接入网小区的切换时, 根据所述宏小区与通用接入网小区 之间的邻区关系向所述用户设备发送测量控制消息。
本发明的另一方面还提供了一种网络配置处理装置, 包括: 邻区建立 模块和切换处理模块。
邻区建立模块, 用于建立宏小区与通用接入网小区之间的邻区关系, 所述邻区关系为宏小区的无线网络控制器与通用接入网小区的通用接入 网控制器之间的邻区对应关系, 两个以上的所述通用接入网小区共享一个 通用接入网控制器。
切换处理模块, 用于在发生用户设备从所述宏小区到通用接入网小区 的切换时, 根据所述宏小区与通用接入网小区之间的邻区关系向所述用户 设备发送测量控制消息。
本发明的另一方面还提供了一种无线网络控制器, 包括上述的网络配 置处理装置。
本发明实施例提供的网络配置处理方法、 装置和无线网络控制器, 通 过在建立宏小区与通用接入网小区之间的邻区关系时,是以 GANC为单位 建立与宏小区的 RNC的邻区关系, 相对于以通用接入网小区为单位建立 与宏小区的 RNC的邻区关系, 对应关系数量较少, 能够有效降低 UMTS、 LTE等网络与 GAN网络进行邻网络配置的复杂度, 减少网络管理和配置工 作的工作量。 附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案, 下面将对实 施例或现有技术描述中所需要使用的附图作一简单地介绍, 显而易见地, 下 面描述中的附图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, 还可以根据这些附图获得其他的附图。
图 1为现有技术中 GAN/EGAN架构图;
图 2为本发明一实施例的一种 GAN邻网络配置处理方法流程示意图; 图 3为本发明另一实施例的一种 GAN邻网络配置处理装置结构示意 图。 具体实施方式
为使本发明实施例的目的、 技术方案和优点更加清楚, 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作出创造性劳动前提 下所获得的所有其他实施例, 都属于本发明保护的范围。
本发明实施例提供了一种 GAN邻网络配置处理方法, 图 2为本发明 一实施例的一种 GAN邻网络配置处理方法流程示意图。
101、 建立宏小区与通用接入网小区之间的邻区关系。
例如, 宏网络可以为 UMTS , LTE等网络, 本步骤中由无线网络控制 器建立宏小区与通用接入网小区之间的邻区关系。 所述邻区关系为宏小区 的 RNC与通用接入网小区的 GANC之间的邻区对应关系, 具体的, 可以 是根据 GANC的扰码、频点号、网络色码、基站色码等建立上述对应关系, 两个以上的所述通用接入网小区共享一个 GANC; 宏小区可以是 UMTS 小区、 LTE小区等类型的小区, 在建立上述宏小区与通用接入网小区的邻 区关系时, 例如, 可以是建立 RNC与 GANC之间的邻区对应关系, 而通 常是多个 (例如, 至少两个, 或至少三个) GAN小区共享一个 GANC。
102、 在发生用户设备从所述宏小区到通用接入网小区的切换时, 根 据所述宏小区与通用接入网小区之间的邻区关系向所述用户设备发送测 量控制消息。
例如, 在发生用户设备从所述宏小区到通用接入网小区的切换时, 无 线网络控制器根据所述宏小区与通用接入网小区之间的邻区关系向所述 用户设备发送测量控制消息, 例如, 根据邻区关系进行用户设备在宏小区 与通用接入网小区间的切换。
本发明上述实施例中提供的通用接入网邻网络配置处理方法, 其中在 建立各宏小区与通用接入网小区之间的邻区关系时,是以 GANC为单位建 立与宏小区的 RNC的邻区关系, 由于在实际的通用接入网中, 是多个通 用接入网小区共享一个 GANC , 因此, 本实施例中以 GANC为单位建立 与 RNC 的邻区关系, 相对于以通用接入网小区为单位建立与宏小区的 RNC的邻区关系, 对应关系数量较少, 能够有效降低 UMTS、 LTE等网络与 GAN网络进行邻网络配置的复杂度, 减少网络管理和配置工作的工作量。 在通用接入网技术中, 根据硬件接口的不同 GANC可以分为 Iu模式 和 A/Gb模式, 在 Iu模式下, GANC向用户设备发送的测量控制消息为同 频测量控制消息; 在 A/Gb模式下, GANC向用户设备发送的测量控制消 息为 3A测量控制消息。 本实施例中进一步的在进行宏小区的邻 GANC配 置时, 进一步将 RNC与 GANC之间的关系设置为补盲模式或卸载模式两 类, 其中补盲模式可以是设置在 UMTS网络覆盖信号较弱区域的 GANC, 起到对 UMTS小区的补充作用; 而卸载模式可以是设置家庭中的 GANC, 该 GANC覆盖的区域可能并非 UMTS网络的信号较弱覆盖区域, 但用户 设备接入可以获得较低的资费, 上述两种区域均可能发生用户设备从宏小 区到 GAN小区的切换。综上所述,可以将宏小区的邻 GANC配置为 "A/Gb 补盲模式" 、 "A/Gb卸载模式" 、 "Iu补盲模式" 和 "Iu卸载模式" 。
另外, 本发明的具体实施例中在向用户设备下发测量控制消息时, 仅 在用户设备的激活集中最好宏小区 (例如, 信号质量最好的宏小区)存在 邻区时, 向用户设备发送测量控制消息, 对上述最好宏小区的邻区进行测 量, 即上述实施例中的根据宏小区与通用接入网小区之间的邻区关系发送 测量控制消息具体为: 根据各宏小区与通用接入网小区之间的邻区关系, 在确定当前最好宏小区配置有邻 GANC 时, 向用户设备发送测量控制消 息,该测量控制消息用于指示用户设备对所述最好宏小区的邻 GANC进行 测量。
在具体实施例中,在确定当前最好宏小区未配置邻 GANC时, 不进行 任何有关发送测量控制消息的前期处理, 如果有已下发的测量控制消息, 则将其释放;
而在确定当前最好宏小区配置了邻 GANC时, 根据邻 GANC的类型 的不同进行处理, 具体的包括如下的内容。
例如,在最好宏小区配置了补盲模式的邻 GANC时, 等待接收用户设 备的当前宏小区信号差事件上报, 仅在接收到用户设备的当前宏小区信号 差事件上报后, 进一步根据用户设备的切换能力、 用户设备当前的业务类 型、 所述目标通用接入网小区支持的业务类型以及源宏小区的无线网络控 制器和其归属的核心网的切换能力中的一项或几项组合确定是否向用户 设备发送测量控制消息, 上述的当前宏小区信号差事件可以是根据 3GPP TS25.33协议规定的 2D事件, 即由用户设备实时检测接收信号质量, 当 接收信号质量低于一定阈值时, 向无线网络控制器返回信号差的指示信 号。 例如, 在用户设备具有从宏小区向通用接入网小区的切换能力, 目标 通用接入网小区支持用户设备当前正在进行的业务类型, 以及源宏小区的 无线网络控制器和其归属的核心网支持用户设备从宏小区向通用接入网 小区的切换的情况下, 确定生成测量控制消息, 并向用户设备发送该测量 控制消息, 以对最好宏小区的邻 GANC进行测量。 例如, 在该邻 GANC 为 A/Gb补盲模式时, 发送的测量控制消息为 3A测量控制消息, 在该邻 GANC为 Iu补盲模式时, 发送的测量控制消息为同频测量控制消息; 本 发明实施例中的 2D事件上报, 以及 3A测量控制消息等都可以按照 3GPP TS25.33协议的规定执行, 其中用户设备上报 2D事件表明用户设备已经 当前处于信号较差的环境, 需要进行网络切换, 这种补盲模式的 GAN网 络, 适合在一些 UMTS网络覆盖较差的环境中使用。
例如, 在最好宏小区配置了卸载模式的邻 GANC时, 不再等待 2D事 件上报,而是直接的根据用户设备的切换能力、用户设备当前的业务类型、 所述目标通用接入网小区支持的业务类型以及源宏小区的无线网络控制 器和其归属的核心网的切换能力中的一项或几项组合确定是否向用户设 备发送测量控制消息。 例如, 在用户设备具有从宏小区向通用接入网小区 的切换能力, 目标通用接入网小区支持用户设备当前正在进行的业务类 型, 以及源宏小区的无线网络控制器和其归属的核心网支持用户设备从宏 小区向通用接入网小区的切换的情况下, 确定生成测量控制消息, 并向用 户设备发送上述测量控制消息。例如,在该邻 GANC为 A/Gb卸载模式时, 发送测量控制消息为 3 A测量控制消息, 在该邻 GANC为 Iu卸载模式时, 发送的测量控制消息为同频测量控制消息, 本实施例中卸载模式可以是针 对家庭或办公区域部署 GAN 网络情况, 在用户设备从 UMTS 小区进入 GAN网络区域, 可能 UMTS小区的信号仍较强, 但用户希望在该区域使 用 GAN网络, 因此当遇到激活集中的当前最好宏小区存在卸载模式的邻 GANC时, 可以不等待 2D事件上报, 而是直接向用户设备发送测量控制 消息, 通知用户设备执行对 GAN网络的测量。 该卸载模式的引入, 能够 丰富 GAN网络的应用场景。
本发明实施例中, 相对于在切换过程中只对激活集中所有宏小区的邻 区进行测量控制的技术方案, 在切换过程中 UMTS网络中的 RNC在下发 的测量控制消息时, 仅指示用户设备对激活集中的最好宏小区的邻区进行 测量, 能够有效减少 UMTS与 GAN网络互操作过程中, GAN小区引入对 现有切换性能的影响。
另外, 本发明上述实施例中在根据多个条件确定可以向用户设备发送 测量控制消息后, 还可以进一步确定是否存在处于有效期的相同测量控制 消息, 本实施例中的测量控制消息有效期是指激活集中的最好宏小区是否 发生变化, 具体的针对本发明的技术方案, 允许用户设备激活集中的最好 宏小区向其邻区切换, 而测量控制消息也是指示用户设备针对最好宏小区 的邻区进行测量, 因此, 若最好宏小区未发生变化, 则向用户设备发送的 测量控制消息的内容将会相同, 再发送测量控制消息就没有必要了, 本实 施例中进行上述判断, 能够避免测量控制消息的重复下发。
与上述方法实施例对应的, 本发明实施例还提供了一种网络配置处理 装置, 该装置可以是设置在宏小区的无线网络控制器中, 图 3为本发明另 一实施例的一种 GAN邻网络配置处理装置结构示意图, 如图 3所示, 该 装置包括邻区建立模块 11和切换处理模块 12,其中邻区建立模块 11用于 建立宏小区与通用接入网小区之间的邻区关系, 所述邻区关系为宏小区的 无线网络控制器与通用接入网小区的通用接入网控制器之间的邻区对应 关系, 两个以上的所述通用接入网小区共享一个通用接入网控制器; 切换 处理模块 12用于在发生用户设备从所述宏小区到通用接入网小区的切换 时, 根据所述宏小区与通用接入网小区之间的邻区关系向所述用户设备发 送测量控制消息。
本发明上述实施例中提供的通用接入网邻网络配置处理装置, 其中在 建立各宏小区与通用接入网小区之间的邻区关系时,是以 GANC为单位建 立与宏小区的 RNC的邻区关系, 由于在实际的通用接入网中, 是多个通 用接入网小区共享一个 GANC , 因此, 本实施例中以 GANC为单位建立 与 RNC的邻区关系,相对于以通用接入网小区建立与宏小区的 RNC的邻 区关系, 对应关系数量较少, 能够有效降低 UMTS、 LTE等网络与 GAN网络 进行邻网络配置的复杂度, 减少网络管理和配置工作的工作量。
本发明上述实施例中的切换处理模块 12具体的可以包括确定单元 21 和消息发送单元 22 , 其中确定单元 21用于根据宏小区与通用接入网小区 之间的邻区关系, 确定当前最好宏小区是否配置有邻通用接入网控制器; 消息发送单元 22用于在确定当前最好宏小区配置有邻通用接入网控制器 时, 向用户设备发送测量控制消息, 所述测量控制消息用于指示用户设备 对所述最好宏小区的邻通用接入网控制器进行测量。
该实施例中仅针对激活集中最好宏小区的邻区下发测量控制消息, 而 不是现有技术中的针对激活集中所有宏小区的邻区都进行测量控制消息 的下发, 能够有效减少 UMTS与 GAN网络互操作过程中, GAN小区引入 对现有切换性能的影响。
具体的针对上述最好宏小区的邻通用接入网控制器的类型不同, 可以 向用户设备发送不同类型的测量控制消息, 即上述的消息发送单元 22可 以包括第一消息发送子单元 221或第二消息发送子单元 222 , 其中第一消 息发送子单元 221用于在所述最好宏小区的邻通用接入网控制器为 Iu模式 时, 向用户设备发送同频测量控制消息, 所述测量控制消息用于指示用户 设备对所述最好宏小区的邻通用接入网控制器进行测量; 第二消息发送子 单元 222用于在所述最好宏小区的邻通用接入网控制器为 A/Gb模式时, 向用户设备发送 3A测量控制消息, 所述测量控制消息用于指示用户设备 对所述最好宏小区的邻通用接入网控制器进行测量。
另外,本发明具体例中,对于邻 GANC的类型还可以分为卸载模式和 补盲模式,其中补盲模式是针对可以是设置在 UMTS网络覆盖信号较弱区 域的 GANC,起到对 UMTS小区的补充作用, 此时可以由检测到信号较弱 时触发对 GAN小区的测量控制; 而卸载模式可以是针对家庭或办公区域 部署 GAN网络情况, 在用户设备从 UMTS小区进入 GAN网络区域, 可 能 UMTS小区的信号仍较强, 但用户希望在该区域使用 GAN网络, 以达 到减低资费等效果。 针对上述两种情况, 通用接入网邻网络配置处理装置 还可以包括第一消息生成子单元 223或第二消息生成子单元 224, 以及第 三消息发送子单元。 例如, 第一消息生成子单元 223用于在发生切换的源 宏小区与目标通用接入网小区归属的通用接入网控制器之间的关系为补 盲模式, 且接收到上述当前宏小区信号差事件 (例如 3GPP TS25.33协议 规定的 2D事件)后, 根据用户设备的切换能力、 用户设备当前业务类型、 所述目标通用接入网小区支持的业务类型以及源宏小区的无线网络控制 器和其归属的核心网的切换能力中的一项或几项组合确定生成测量控制 消息。 第二消息生成子单元 224用于在发生切换的源宏小区与目标通用接 入网小区归属的通用接入网控制器之间的关系为卸载模式, 直接根据用户 设备的切换能力、 用户设备当前的业务类型、 所述目标通用接入网小区支 持的业务类型以及源宏小区的无线网络控制器和其归属的核心网的切换 能力中的一项或几项组合确定生成测量控制消息; 第三消息发送子单元, 用于向用户设备发送所述测量控制消息。
本发明实施例还提供了一种宏网络的无线网络控制器, 该无线网络控 制器包括上述实施例中的网络配置处理装置。
本发明上述实施例提供的网络配置处理方法、 装置以及无线网络控制 器, 其中的在进行宏小区与 GAN小区的邻区配置时, 是以 GANC为单位 建立上述二者之间的邻区关系, 相对于现有技术能够有效降低 UMTS、 LTE 等网络与 GAN网络进行邻网络配置的复杂度, 减少网络管理和配置工作的 工作量。 另外针对用户设备由宏小区到通用接入网小区的切换, 只针对激 活集中最好宏小区的邻 GANC下发测量控制消息, 可以有效的减少 UMTS 与 GAN网络互操作过程中, GAN小区引入对现有切换性能的影响。 卸载 模式的引入, 丰富了业务应用场景, 是 GAN网络的部署更加灵活。
本领域普通技术人员可以理解: 实现上述方法实施例的全部或部分步 骤可以通过程序指令相关的硬件来完成, 前述的程序可以存储于一计算机 可读取存储介质中, 该程序在执行时, 执行包括上述方法实施例的步骤; 而前述的存储介质包括: ROM、 RAM , 磁碟或者光盘等各种可以存储程 序代码的介质。 最后应说明的是: 以上实施例仅用以说明本发明的技术方案, 而非对 其限制; 尽管参照前述实施例对本发明进行了详细的说明, 本领域的普通 技术人员应当理解: 其依然可以对前述各实施例所记载的技术方案进行修 改, 或者对其中部分技术特征进行等同替换; 而这些修改或者替换, 并不 使相应技术方案的本质脱离本发明各实施例技术方案的精神和范围。

Claims

权 利 要 求 书
1、 一种网络配置处理方法, 其特征在于, 包括:
建立宏小区与通用接入网小区之间的邻区关系, 所述邻区关系为宏小 区的无线网络控制器与通用接入网小区的通用接入网控制器之间的邻区 对应关系, 两个以上的所述通用接入网小区共享一个通用接入网控制器; 在发生用户设备从所述宏小区到通用接入网小区的切换时, 根据所述 宏小区与通用接入网小区之间的邻区关系向所述用户设备发送测量控制 消息。
2、 根据权利要求 1 所述的网络配置处理方法, 其特征在于, 所述根 据宏小区与通用接入网小区之间的邻区关系发送测量控制消息包括:
根据各宏小区与通用接入网小区之间的邻区关系, 在确定当前最好宏 小区配置有邻通用接入网控制器时, 向用户设备发送测量控制消息, 所述 测量控制消息用于指示用户设备对所述最好宏小区的邻通用接入网控制 器进行测量。
3、 根据权利要求 2所述的网络配置处理方法, 其特征在于, 所述最 好宏小区的邻通用接入网控制器为 Iu模式或 A/Gb模式, 且在所述最好宏 小区的邻通用接入网控制器为 Iu模式时,所述向用户设备发送的测量控制 消息为同频测量控制消息, 在所述最好宏小区的邻通用接入网控制器为 A/Gb模式时, 所述向用户设备发送的测量控制消息为 3A测量控制消息。
4、 根据权利要求 2所述的网络配置处理方法, 其特征在于, 在所述 宏小区的无线网络控制器与通用接入网小区的通用接入网控制器之间的 邻区对应关系中, 所述无线网络控制器与所述通用接入网控制器之间的关 系为补盲模式或卸载模式。
5、 根据权利要求 4所述的网络配置处理方法, 其特征在于, 若发生 切换的源宏小区与目标通用接入网小区归属的通用接入网控制器之间的 关系为补盲模式, 所述向用户设备发送测量控制消息包括: 接收当前宏小区信号差事件上报;
并在接收到所述当前宏小区信号差事件上报后, 根据用户设备的切换 能力、 用户设备当前业务类型、 所述目标通用接入网小区支持的业务类型 以及源宏小区的无线网络控制器和其归属的核心网的切换能力中的一项 或几项组合确定生成测量控制消息;
向用户设备发送所述测量控制消息。
6、 根据权利要求 4所述的网络配置处理方法, 其特征在于, 若发生 切换的源宏小区与目标通用接入网小区归属的通用接入网控制器之间的 关系为卸载模式, 所述向用户设备发送测量控制消息包括:
直接根据用户设备的切换能力、 用户设备当前的业务类型、 所述目标 通用接入网小区支持的业务类型以及源宏小区的无线网络控制器和其归 属的核心网的切换能力中的一项或几项组合确定生成测量控制消息;
向用户设备发送所述测量控制消息。
7、 根据权利要求 5或 6所述的网络配置处理方法, 其特征在于, 所 述向用户设备发送测量控制消息包括:
在确定不存在处于有效期的相同测量控制消息时, 向用户设备发送所 述测量控制消息。
8、 一种网络配置处理装置, 其特征在于, 包括:
邻区建立模块, 用于建立宏小区与通用接入网小区之间的邻区关系, 所述邻区关系为宏小区的无线网络控制器与通用接入网小区的通用接入 网控制器之间的邻区对应关系, 两个以上的所述通用接入网小区共享一个 通用接入网控制器;
切换处理模块, 用于在发生用户设备从所述宏小区到通用接入网小区 的切换时, 根据所述宏小区与通用接入网小区之间的邻区关系向所述用户 设备发送测量控制消息。
9、 根据权利要求 8 所述的网络配置处理装置, 其特征在于, 所述切 换处理模块包括:
确定单元, 用于根据宏小区与通用接入网小区之间的邻区关系, 确定 当前最好宏小区是否配置有邻通用接入网控制器;
消息发送单元, 用于在确定当前最好宏小区配置有邻通用接入网控制 器时, 向用户设备发送测量控制消息, 所述测量控制消息用于指示用户设 备对所述最好宏小区的邻通用接入网控制器进行测量。
10、 根据权利要求 9所述的网络配置处理装置, 其特征在于, 所述消 息发送单元包括:
第一消息发送子单元, 用于在所述最好宏小区的邻通用接入网控制器 为 Iu模式时, 向用户设备发送同频测量控制消息, 所述测量控制消息用于 指示用户设备对所述最好宏小区的邻通用接入网控制器进行测量;
第二消息发送子单元, 用于在所述最好宏小区的邻通用接入网控制器 为 A/Gb模式时, 向用户设备发送 3A测量控制消息, 所述测量控制消息 用于指示用户设备对所述最好宏小区的邻通用接入网控制器进行测量。
11、 根据权利要求 9所述的网络配置处理装置, 其特征在于, 所述消 息发送单元包括:
第一消息生成子单元, 用于在发生切换的源宏小区与目标通用接入网 小区归属的通用接入网控制器之间的关系为补盲模式, 且接收到所述当前 宏小区信号差事件上报后, 根据用户设备的切换能力、 用户设备当前业务 类型、 所述目标通用接入网小区支持的业务类型以及源宏小区的无线网络 控制器和其归属的核心网的切换能力中的一项或几项组合确定生成测量 控制消息;
第二消息生成子单元, 用于在发生切换的源宏小区与目标通用接入网 小区归属的通用接入网控制器之间的关系为卸载模式, 直接根据用户设备 的切换能力、 用户设备当前的业务类型、 所述目标通用接入网小区支持的 业务类型以及源宏小区的无线网络控制器和其归属的核心网的切换能力 中的一项或几项组合确定生成测量控制消息;
第三消息发送子单元, 用于向用户设备发送所述测量控制消息。
12、 一种无线网络控制器, 其特征在于, 包括权利要求 8-11 任 述的网络配置处理装置。
PCT/CN2011/073949 2011-05-11 2011-05-11 一种网络配置处理方法、装置和无线网络控制器 WO2011124172A2 (zh)

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