WO2010009599A1 - 一种空闲模式进入方法 - Google Patents

一种空闲模式进入方法 Download PDF

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Publication number
WO2010009599A1
WO2010009599A1 PCT/CN2008/073614 CN2008073614W WO2010009599A1 WO 2010009599 A1 WO2010009599 A1 WO 2010009599A1 CN 2008073614 W CN2008073614 W CN 2008073614W WO 2010009599 A1 WO2010009599 A1 WO 2010009599A1
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WO
WIPO (PCT)
Prior art keywords
terminal
idle mode
mobility restriction
anchor
restriction parameter
Prior art date
Application number
PCT/CN2008/073614
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English (en)
French (fr)
Inventor
宋建全
刘鑫
褚丽
曲红云
许玲
Original Assignee
中兴通讯股份有限公司
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.)
Filing date
Publication date
Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to US13/054,897 priority Critical patent/US8599732B2/en
Priority to EP08876605.0A priority patent/EP2306760B1/en
Priority to JP2011519005A priority patent/JP5285774B2/ja
Publication of WO2010009599A1 publication Critical patent/WO2010009599A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W12/00Security arrangements; Authentication; Protecting privacy or anonymity
    • H04W12/06Authentication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/20Manipulation of established connections
    • H04W76/27Transitions between radio resource control [RRC] states
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W60/00Affiliation to network, e.g. registration; Terminating affiliation with the network, e.g. de-registration
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W68/00User notification, e.g. alerting and paging, for incoming communication, change of service or the like

Definitions

  • the present invention relates to the field of communications, and in particular, to an idle mode entry method in a Worldwide Interoperability for Microwave Access (WiMAX) system.
  • WiMAX Worldwide Interoperability for Microwave Access
  • Idle mode has been defined in WiMAX systems.
  • the terminal enters the idle mode from the active mode the corresponding air connection and the connection of the access network are all released, and the information of the terminal is stored in the anchor paging controller, so the terminal does not occupy the air resources and the resources of the access network.
  • the terminal entering the idle mode periodically receives the downlink broadcast message, and does not need to register at a specific base station when moving in multiple base station areas, thereby saving energy consumption of the terminal.
  • the paging proxy sends the terminal related information to the anchor paging controller of the terminal through the idle mode entry state change request message, and the message carries the anchor paging required.
  • the terminal saves the information of the terminal (hereinafter referred to as idle mode entry parameter), and the information includes part or all of the following: anchor paging controller identifier, anchor authenticator identifier, anchor gateway identifier, current access Base station identity, paging parameters, traffic flow information, SBC (Terminal Basic Capabilities) context, REG (registration) context, PKM (Private Key Management) context, security association description, traffic flow information.
  • the anchor paging controller After receiving the idle mode entry state change request message sent by the paging proxy, the anchor paging controller also performs message interaction with the anchor authenticator of the terminal, so that the anchor authenticator determines whether the terminal is allowed to enter the idle state. Mode; only if it is determined that the terminal is allowed to enter the idle mode, the anchor authenticator saves the anchor paging controller identifier of the terminal, and then the anchor paging controller saves the idle mode entry parameter.
  • FIG. 1 is a schematic diagram of a flow of an existing WiMAX system terminal entering an idle mode, which specifically includes the following steps:
  • the paging proxy sends an idle mode entry state change request message to the anchor paging controller (Each anchor paging controller has a corresponding location register, the location register is used to record the information of the terminal in idle mode); the message carries parameters such as the current base station identity, paging parameters, idle mode reservation information, etc.; The message may arrive at the anchor paging controller via one or more relay paging controllers.
  • the anchor paging controller sends an idle mode entry state change request message to the anchor authenticator; after receiving the message, the anchor authenticator determines whether the terminal is allowed to enter the idle mode: if allowed, the anchor authenticator Save the anchor paging controller ID.
  • the anchor authenticator sends an idle mode entry status change response message to the anchor paging controller; the response message has an anchoring result of the anchor authenticator (result identification); if the judgment result indicates that the terminal is allowed to enter the idle state In the mode, the anchor paging controller saves the above idle mode entry parameters of the terminal.
  • the anchor paging controller sends an idle mode entry status change response message to the paging proxy; the message may arrive at the anchor paging proxy via one or more relay paging controllers.
  • the existing WiMAX system does not consider the mobility limiting feature of the terminal in the above process of entering the idle mode.
  • the so-called mobility limitation means that the WiMAX system operator does not have a mobile license and needs to restrict mobility of its user terminals; or even if the operator has a mobile license, the operator limits the type in order to attract low-end users to use the WiMAX network.
  • the mobility of the user terminal makes it possible to use the WiMAX network at a low price.
  • the technical problem to be solved by the present invention is to overcome the deficiencies of the prior art and provide an idle mode entry method for restricting mobility of a terminal.
  • the present invention provides an idle mode entry method, which is applied to a global interoperability authentication system for microwave access, and the method includes:
  • the paging proxy of the terminal sends the mobility restriction parameter of the terminal to the mobility restriction parameter storage network element in the process of the terminal transitioning from the active mode to the idle mode;
  • the mobility restriction parameter storage network element is: an anchor paging controller, or an anchor authenticator, or a functional entity including an anchor paging controller function and an anchor authenticator function.
  • the state change request message is sent to the mobility restriction parameter storage network element.
  • the mobility restriction parameter storage network element is an anchor paging controller
  • the anchor paging controller after the anchor paging controller receives the idle mode entry state change request message, send an idle mode entry to the anchor authenticator. a state change request message; and saving the mobility restriction parameter only when receiving a response message that the anchor authenticator allows the terminal to enter an idle mode;
  • the mobility restriction parameter storage network element is an anchor authenticator, or a functional entity including an anchor paging controller function and an anchor authenticator function
  • the mobility restriction parameter storage network element receives the location After the idle mode enters the state change request message, it is determined whether the terminal is allowed to enter the idle mode; and the mobility restriction parameter is saved only when it is determined that the terminal is allowed to enter the idle mode.
  • the mobility restriction parameter includes one or more of the following: a base station identifier list that allows or prohibits access, an access service network identifier list that allows or prohibits access, a number of consecutive handovers, and a minimum time interval for allowing handover
  • the service base station redirection area and the redirection area service continuity support identifier are allowed or prohibited.
  • the idle mode entry state change request message includes current location information of the terminal
  • the mobility restriction parameter storage network element further performs mobility restriction determination on the terminal according to the location information and the mobility restriction parameter before saving the mobility restriction parameter; if it is determined that the terminal does not satisfy the mobility sexual restrictions, then: Returning to the paging proxy a response message indicating that the idle mode entry failed; and/or
  • a notification message that has exceeded the mobility restriction area is sent to the terminal.
  • the location information includes a base station identifier
  • the mobility restriction parameter includes: a base station identifier that is allowed to access, or a base station identifier that is prohibited from accessing; and only when the base station identifier belongs to the permission in the mobility restriction parameter. Determining that the terminal satisfies the mobility restriction condition when the base station identifier of the access, or the base station identifier of the forbidden access in the mobility restriction parameter is not included; or
  • the location information includes an access service network identifier, where the mobility restriction parameter includes: an access service network identifier that is allowed to access, or an access service network identifier that is prohibited from accessing;
  • the access service network identifier of the access restriction in the mobility restriction parameter or the access service network identifier that is not allowed to be accessed in the mobility restriction parameter is determined, the terminal is determined to satisfy the mobility restriction condition.
  • the present invention also provides an idle mode entry method for use in a microwave access global interoperability authentication system, the method comprising:
  • the anchor authenticator of the terminal includes the mobility limit parameter of the terminal in the idle mode entry state change response message, and the anchor search is sent to the terminal.
  • the anchor paging controller saves the mobility restriction parameter after receiving the idle mode entry state change response message.
  • the anchor authenticator before transmitting the idle mode entry status change response message, the anchor authenticator further determines whether the terminal is allowed to enter an idle mode; and the anchor authentication is only allowed when the terminal is allowed to enter an idle mode.
  • the device transmits the mobility restriction parameter of the terminal to the anchor paging controller in an idle mode entry state change response message;
  • the anchor paging controller saves the mobility of the terminal only when the received idle mode entry state change response message includes information that the anchor authenticator allows the terminal to enter an idle mode. Limit parameters.
  • the anchor authenticator sends the idle mode to enter the state change response message, and further includes the following steps: the paging proxy of the terminal The anchor paging controller sends an idle mode entry state change request message including current location information of the terminal;
  • the anchor paging controller further performs mobility restriction determination on the terminal according to the location information and the mobility restriction parameter before saving the mobility restriction parameter; if it is determined that the terminal does not satisfy mobility Restrictions, then execute:
  • a notification message that has exceeded the mobility restriction area is sent to the terminal.
  • the location information includes a base station identifier
  • the mobility restriction parameter includes: a base station identifier that is allowed to access, or a base station identifier that is prohibited from accessing; and only when the base station identifier belongs to the permission in the mobility restriction parameter. Determining that the terminal satisfies the mobility restriction condition when the base station identifier of the access, or the base station identifier of the forbidden access in the mobility restriction parameter is not included; or
  • the location information includes an access service network identifier, where the mobility restriction parameter includes: an access service network identifier that is allowed to access, or an access service network identifier that is prohibited from accessing;
  • the access service network identifier of the access restriction in the mobility restriction parameter or the access service network identifier that is not allowed to be accessed in the mobility restriction parameter is determined, the terminal is determined to satisfy the mobility restriction condition.
  • the method of the present invention can save the mobility limit parameter of the terminal when the terminal enters the idle mode, so as to determine the mobility limit of the terminal in the subsequent processing flow, thereby avoiding the error. Allows the terminal to exit from the idle mode to the active mode in the unauthorized area, or to perform location update and other issues.
  • 1 is a schematic flow chart of an existing WiMAX system terminal entering an idle mode
  • 2 is a flow chart of an idle mode entry method according to a first embodiment of the present invention
  • FIG. 3 is a flow chart of an idle mode entry method according to a second embodiment of the present invention.
  • FIG. 4 is a flow chart of an idle mode entry method according to a third embodiment of the present invention.
  • FIG. 5 is a flowchart of an idle mode entry method according to a fourth embodiment of the present invention.
  • the WiMAX system can limit the mobility of the terminal by using the mobility restriction parameter; the mobility restriction parameter can be determined according to the specific requirements of the operator, including but not limited to some or all of the following parameters: an area that is allowed to be accessed (or prohibited) Incoming area), the number of consecutive handovers, the minimum time interval allowed for handover, the allowed or prohibited serving base station redirection area, and the redirection area service continuity support identifier.
  • the area allowed/disabled may be a list of base station identifiers that allow/disallow access, or a list of access service network identifiers that allow/disallow access.
  • the serving base station redirection refers to redirecting the terminal to another base station to continue to provide services when a certain base station is overloaded; the redirected area service continuity support identifier is used to indicate that the terminal is redirected to a certain base station. Whether to support the continuity of the service (that is, to keep the current service of the terminal uninterrupted).
  • FIG. 2 is a flowchart of an idle mode entry method according to a first embodiment of the present invention.
  • an anchor paging controller is selected to save a mobility restriction parameter of the terminal after the terminal enters an idle mode, and the paging proxy enters through an idle mode.
  • the state change request message sends the mobility limit parameter of the terminal to the anchor paging controller; the method includes the following steps:
  • the paging proxy sends an idle mode entry state change request message to the anchor paging controller
  • Each anchor paging controller has a corresponding location register, the location register is used to record the information of the terminal in idle mode); the message carries the current base station identity, paging parameters, idle mode The information is retained, as well as the mobility limit parameters of the terminal, etc.; the message may arrive at the anchor paging controller via one or more relay paging controllers.
  • the anchor paging controller sends an idle mode entry state change request message to the anchor authenticator; after receiving the message, the anchor authenticator determines whether the terminal is allowed to enter the idle mode: if allowed, the anchor authenticator Save the anchor paging controller ID.
  • the anchor authenticator sends an idle mode entry status change response message to the anchor paging controller; the response message has an anchoring result of the anchor authenticator (result identification); if the judgment result indicates that the terminal is allowed to enter the idle state Mode, the anchor paging controller saves the mobility limit parameters of the terminal, and other information that needs to be saved in the idle mode of the terminal.
  • the anchor paging controller may not save the mobility limit parameters of the terminal to save storage resources.
  • the anchor paging controller sends an idle mode entry status change response message to the paging proxy; the message may arrive at the paging proxy via one or more relay paging controllers.
  • FIG. 3 is a flowchart of a method for entering an idle mode according to a second embodiment of the present invention.
  • an anchor authenticator is selected to save a mobility restriction parameter of the terminal after the terminal enters an idle mode, and the paging proxy enters the state by using an idle mode.
  • the change request message sends the mobility limit parameter of the terminal to the anchor authenticator; the method includes the following steps:
  • the paging proxy sends an idle mode entry state change request message to the anchor paging controller
  • Each anchor paging controller has a corresponding location register, the location register is used to record the information of the terminal in idle mode); the message carries the current base station identity, paging parameters, idle mode reservation information, and terminal Mobility limit parameters, etc.; the message may arrive at the anchor paging controller via one or more relay paging controllers.
  • the anchor paging controller sends an idle mode entry state change request message to the anchor authenticator; after receiving the message, the anchor authenticator determines whether the terminal is allowed to enter the idle mode: if allowed, the anchor authenticator The anchor paging controller identity and the mobility limit parameters of the terminal are saved.
  • the anchor authenticator sends an idle mode entry status change response message to the anchor paging controller; the response message has an anchoring result of the anchor authenticator (result identification); if the judgment result indicates that the terminal is allowed to enter the idle state In the mode, the anchor paging controller saves information other than the mobility restriction parameter of the terminal that needs to be saved in the idle mode of the terminal.
  • the anchor paging controller sends an idle mode entry status change response message to the paging proxy; the message may arrive at the paging proxy via one or more relay paging controllers.
  • an anchor paging controller and an anchor authenticator are located in the same functional entity (referred to as an anchor paging controller/anchor
  • the authenticator selects the function entity to save the mobility restriction parameter of the terminal after the terminal enters the idle mode, and the paging proxy sends the mobility restriction parameter of the terminal to the functional entity by entering the state change request message in the idle mode; Including the following steps:
  • the paging proxy sends an idle mode entry state change request message to the anchor paging controller (each anchor paging controller has a corresponding location register, and the location register is used to record the information of the terminal in idle mode) / Anchoring the authenticator; the message carries the current base station identity, paging parameters, idle mode reservation information, and mobility limit parameters of the terminal; the message may arrive at the anchor via one or more relay paging controllers Fixed paging controller/anchor authenticator.
  • the anchor paging controller/anchor authenticator receives the idle mode entry state change request message, and determines whether the terminal is allowed to enter the idle mode: if allowed, anchors the paging controller/anchor
  • FIG. 5 is a flowchart of an idle mode entry method according to a fourth embodiment of the present invention.
  • an anchor paging controller is selected to save a mobility restriction parameter of the terminal after the terminal enters an idle mode, and the anchor authenticator passes the idle state.
  • the mode entry status change response message sends the mobility limit parameter of the terminal to the anchor paging controller; the method includes the following steps: 501: The paging proxy sends an idle mode entry state change request message to the anchor paging controller (each anchor paging controller has a corresponding location register, and the location register is used to record the information of the terminal in idle mode); The message carries the current base station identity, paging parameters, idle mode reservation information, etc.; the message may arrive at the anchor paging controller via one or more relay paging controllers.
  • the anchor paging controller sends an idle mode entry state change request message to the anchor authenticator; after receiving the message, the anchor authenticator determines whether the terminal is allowed to enter the idle mode: if allowed, the anchor authenticator Save the anchor paging controller ID.
  • the anchor authenticator sends an idle mode entry state change response message to the anchor paging controller; the response message has an anchor authenticator judgment result (result identifier) and the anchor authenticator saved The mobility limit parameter of the terminal; if the judgment result indicates that the terminal is allowed to enter the idle mode, the anchor paging controller saves the mobility restriction parameter of the terminal and other information that needs to be saved in the idle mode of the terminal.
  • the anchor paging controller may not save the mobility limit parameters of the terminal to save storage resources.
  • the anchor paging controller sends an idle mode entry status change response message to the paging proxy; the message may arrive at the paging proxy via one or more relay paging controllers.
  • the idle mode entry state change request message sent by the paging proxy may also carry other location information except the current base station identifier, for example, : Access service network identifier.
  • the anchor paging controller or the anchor authenticator may further determine the mobility limit according to the current location information of the terminal and the mobility restriction parameter before storing the mobility limitation parameter of the terminal, to determine the location of the current terminal. Whether the information satisfies the mobility restriction condition (that is, whether the location information belongs to the base station identifier or the access service network identifier that is allowed to access, or the base station or the access service network that is prohibited from accessing); if it is satisfied, the mobility limit of the terminal is saved.
  • the mobility restriction condition that is, whether the location information belongs to the base station identifier or the access service network identifier that is allowed to access, or the base station or the access service network that is prohibited from accessing
  • the mobility limitation determination operation may be performed when the anchor paging controller receives the idle mode entry state change request message sent by the paging proxy, when When it is determined that the location information of the current terminal does not satisfy the mobility restriction condition, the subsequent steps 203 and 204 may not be performed; and the processing that does not satisfy the mobility restriction condition is directly executed to reduce unnecessary processing.
  • the mobility limitation determining operation may also be performed when receiving the idle mode entry state change response message sent by the anchor authenticator. In this case, if it is determined that the current terminal location information does not satisfy the mobility restriction condition, Perform processing that does not satisfy the mobility restrictions.
  • the result of the mobility limitation determination may be included in the idle mode entry state change response message and sent to the anchor paging controller, by anchoring the paging.
  • the controller selects a process that does not satisfy the mobility restriction condition.
  • the mobility restriction parameter of the terminal may not be included in the idle mode entry state change response message and sent to the anchor paging controller.
  • the method of the present invention can save the mobility limit parameter of the terminal when the terminal enters the idle mode, so as to determine the mobility limit of the terminal in the subsequent processing flow, thereby avoiding the error. Allows the terminal to exit from the idle mode to the active mode in the unauthorized area, or to perform location update and other issues.

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

Description

一种空闲模式进入方法
技术领域
本发明涉及通信领域,尤其涉及一种 WiMAX ( Worldwide Interoperability for Microwave Access , 微波接入全球互操作性认证 ) 系统中的空闲模式进入 方法。
背景技术
目前在 WiMAX系统已经定义了空闲模式。 终端由激活模式进入空闲模 式时, 其对应的空中连接以及接入网的连接全部被释放, 而终端的信息保存 在锚定寻呼控制器中, 因此终端不占用空中资源以及接入网的资源; 进入空 闲模式的终端周期性接收下行广播消息, 在多个基站区域移动时不需要在特 定的基站进行登记, 因此能够节省终端的能耗。
无论是终端还是网络发起的空闲模式的进入流程, 寻呼代理都会把终端 相关的信息通过空闲模式进入状态改变请求消息发送给该终端的锚定寻呼控 制器, 该消息携带需要锚定寻呼控制器保存的该终端的信息 (以下称为空闲 模式进入参数) , 这些信息包括如下部分或全部: 锚定寻呼控制器标识, 锚 定鉴权器标识, 锚定网关标识, 当前接入的基站标识, 寻呼参数, 业务流信 息, SBC (终端基本能力 )上下文, REG (登记)上下文, PKM (私钥管理) 上下文, 安全关联描述, 业务流信息。
锚定寻呼控制器收到寻呼代理发送的空闲模式进入状态改变请求消息 后, 还会与该终端的锚定鉴权器进行消息交互, 让锚定鉴权器判断是否允许 该终端进入空闲模式; 只有判定允许该终端进入空闲模式, 锚定鉴权器才会 保存该终端的锚定寻呼控制器标识, 进而锚定寻呼控制器才会保存上述空闲 模式进入参数。
图 1是现有的 WiMAX系统终端进入空闲模式的流程示意图, 具体包括 如下步骤:
101: 寻呼代理发送空闲模式进入状态改变请求消息给锚定寻呼控制器 (每个锚定寻呼控制器都有一个对应的位置寄存器, 位置寄存器用来记录空 闲模式下终端的信息) ; 该消息中带有当前基站标识, 寻呼参数, 空闲模式 保留信息等参数; 该消息可能经过一个或多个中继寻呼控制器到达锚定寻呼 控制器。
102: 锚定寻呼控制器发送空闲模式进入状态改变请求消息给锚定鉴权 器; 锚定鉴权器收到该消息后判断是否允许该终端进入空闲模式: 如果允许, 锚定鉴权器保存锚定寻呼控制器标识。
103 : 锚定鉴权器发送空闲模式进入状态改变响应消息给锚定寻呼控制 器; 该响应消息中带有锚定鉴权器的判断结果(结果标识) ; 如果判断结果 表明允许终端进入空闲模式, 则锚定寻呼控制器保存终端的上述空闲模式进 入参数。
104: 锚定寻呼控制器发送空闲模式进入状态改变响应消息给寻呼代理; 该消息可能经过一个或多个中继寻呼控制器到达锚定寻呼代理。
现有的 WiMAX系统在上述进入空闲模式的流程中并没有考虑终端的移 动性限制特征。 所谓移动性限制, 是指 WiMAX系统运行商没有移动牌照, 需要对其用户终端进行移动性限制; 或者即使运营商有移动牌照, 但是运营 商为了吸引低端用户使用 WiMAX网络, 在限制该类型的用户终端的移动性 的条件下使其以低廉的价格使用 WiMAX网络。
因此, 釆用现有的空闲模式进入方法, 将造成在后续的处理流程(如空 闲模式退出流程、 位置更新流程、 锚定寻呼控制器或锚定鉴权器重新分配流 程等) 中无法进行移动性限制判断, 进而造成错误地允许终端在非授权区域 由空闲模式退出至激活模式、 或进行位置更新等问题。 发明内容
本发明所要解决的技术问题是, 克服现有技术的不足, 提供一种对终端 进行移动性限制的空闲模式进入方法。 为了解决上述问题, 本发明提供一种空闲模式进入方法, 应用于微波接 入全球互操作性认证系统中, 该方法包括:
在终端由激活模式转入空闲模式的过程中, 所述终端的寻呼代理将所述 终端的移动性限制参数发送给移动性限制参数存储网元;
所述移动性限制参数存储网元是: 锚定寻呼控制器, 或锚定鉴权器, 或 包含锚定寻呼控制器功能和锚定鉴权器功能的功能实体。
态改变请求消息中发送给所述移动性限制参数存储网元。
此外, 如果所述移动性限制参数存储网元是锚定寻呼控制器, 在锚定寻 呼控制器接收到所述空闲模式进入状态改变请求消息后 , 向锚定鉴权器发送 空闲模式进入状态改变请求消息; 并且仅在接收到锚定鉴权器允许所述终端 进入空闲模式的响应消息时, 保存所述移动性限制参数;
如果所述移动性限制参数存储网元是锚定鉴权器、 或包含锚定寻呼控制 器功能和锚定鉴权器功能的功能实体, 在所述移动性限制参数存储网元接收 到所述空闲模式进入状态改变请求消息后, 判断是否允许所述终端进入空闲 模式; 并且仅在判定允许所述终端进入空闲模式时, 保存所述移动性限制参 数。
此外, 所述移动性限制参数包括以下一种或多种: 允许或禁止接入的基 站标识列表、 允许或禁止接入的接入服务网标识列表、 连续切换的次数、 允 许切换的最小时间间隔、 允许或禁止的服务基站重定向区域、 重定向区域业 务连续性支持标识。
此外, 所述空闲模式进入状态改变请求消息中包含所述终端当前的位置 信息;
所述移动性限制参数存储网元在保存所述移动性限制参数前, 还根据所 述位置信息和所述移动性限制参数对所述终端进行移动性限制判断; 若判定 所述终端不满足移动性限制条件, 则执行: 向所述寻呼代理返回空闲模式进入失败的响应消息; 和 /或
触发所述终端的退网流程; 和 /或
向所述终端发送已经超出移动性限制区域的通知消息。
此外, 所述位置信息包括基站标识, 所述移动性限制参数包括: 允许接 入的基站标识, 或禁止接入的基站标识; 且仅当所述基站标识属于移动性限 制参数中的所述允许接入的基站标识, 或不属于移动性限制参数中的所述禁 止接入的基站标识时, 判定所述终端满足移动性限制条件; 或
所述位置信息包括接入服务网标识, 所述移动性限制参数包括: 允许接 入的接入服务网标识, 或禁止接入的接入服务网标识; 仅当所述接入服务网 标识属于移动性限制参数中的所述允许接入的接入服务网标识, 或不属于移 动性限制参数中的所述禁止接入的接入服务网标识时, 判定所述终端满足移 动性限制条件。
本发明还提供一种空闲模式进入方法, 应用于微波接入全球互操作性认 证系统中, 该方法包括:
在终端由激活模式转入空闲模式的过程中, 所述终端的锚定鉴权器将所 述终端的移动性限制参数包含在空闲模式进入状态改变响应消息中发送给所 述终端的锚定寻呼控制器;
所述锚定寻呼控制器接收到所述空闲模式进入状态改变响应消息后保存 所述移动性限制参数。
此外, 发送所述空闲模式进入状态改变响应消息前, 所述锚定鉴权器还 判断是否允许所述终端进入空闲模式;且仅在允许所述终端进入空闲模式时, 所述锚定鉴权器才将所述终端的移动性限制参数包含在空闲模式进入状态改 变响应消息中发送给所述锚定寻呼控制器;
仅在接收到的所述空闲模式进入状态改变响应消息中包含所述锚定鉴权 器允许所述终端进入空闲模式的信息时, 所述锚定寻呼控制器才保存所述终 端的移动性限制参数。 此外, 在所述终端由激活模式转入空闲模式的过程中, 所述锚定鉴权器 发送所述空闲模式进入状态改变响应消息前, 还包括如下步骤: 所述终端的 寻呼代理向所述锚定寻呼控制器发送包含所述终端当前的位置信息的空闲模 式进入状态改变请求消息;
所述锚定寻呼控制器在保存所述移动性限制参数前, 还根据所述位置信 息和所述移动性限制参数对所述终端进行移动性限制判断; 若判定所述终端 不满足移动性限制条件, 则执行:
向所述寻呼代理返回空闲模式进入失败的响应消息; 和 /或
触发所述终端的退网流程; 和 /或
向所述终端发送已经超出移动性限制区域的通知消息。
此外, 所述位置信息包括基站标识, 所述移动性限制参数包括: 允许接 入的基站标识, 或禁止接入的基站标识; 且仅当所述基站标识属于移动性限 制参数中的所述允许接入的基站标识, 或不属于移动性限制参数中的所述禁 止接入的基站标识时, 判定所述终端满足移动性限制条件; 或
所述位置信息包括接入服务网标识, 所述移动性限制参数包括: 允许接 入的接入服务网标识, 或禁止接入的接入服务网标识; 仅当所述接入服务网 标识属于移动性限制参数中的所述允许接入的接入服务网标识, 或不属于移 动性限制参数中的所述禁止接入的接入服务网标识时, 判定所述终端满足移 动性限制条件。
综上所述, 釆用本发明的方法, 可以实现在终端进入空闲模式时保存该 终端的移动性限制参数, 以便在后续的处理流程中对该终端进行移动性限制 判断, 进而避免造成错误地允许终端在非授权区域由空闲模式退出至激活模 式、 或进行位置更新等问题。
附图概述
图 1是现有的 WiMAX系统终端进入空闲模式的流程示意图; 图 2是本发明第一实施例空闲模式进入方法流程图;
图 3是本发明第二实施例空闲模式进入方法流程图;
图 4是本发明第三实施例空闲模式进入方法流程图;
图 5是本发明第四实施例空闲模式进入方法流程图。
本发明的较佳实施方式
WiMAX 系统可以釆用移动性限制参数对终端的移动性进行限制; 移动 性限制参数可以根据运行商的具体需求来确定, 包括但不限于如下部分或全 部参数: 允许接入的区域(或禁止接入的区域) 、 连续切换的次数, 允许切 换的最小时间间隔, 允许或禁止的服务基站重定向区域, 重定向区域业务连 续性支持标识。
允许 /禁止接入的区域可以是允许 /禁止接入的基站标识列表, 或允许 /禁 止接入的接入服务网标识列表。
其中, 服务基站重定向是指在某一基站负载过重时将终端重定向到另一 基站继续为其提供服务; 重定向区域业务连续性支持标识用于指示在将终端 重定向到某一基站时, 是否支持业务的连续性(即保持该终端当前业务不中 断) 。
下面将结合附图和实施例对本发明进行详细描述。
第一实施例
图 2是本发明第一实施例空闲模式进入方法流程图; 本实施例中, 选择 锚定寻呼控制器在终端进入空闲模式后保存该终端的移动性限制参数, 寻呼 代理通过空闲模式进入状态改变请求消息将终端的移动性限制参数发送给锚 定寻呼控制器; 该方法包括如下步骤:
201 : 寻呼代理发送空闲模式进入状态改变请求消息给锚定寻呼控制器
(每个锚定寻呼控制器都有一个对应的位置寄存器, 位置寄存器用来记录空 闲模式下终端的信息) ; 该消息中带有当前基站标识, 寻呼参数, 空闲模式 保留信息, 以及终端的移动性限制参数等; 该消息可能会经过一个或多个中 继寻呼控制器到达锚定寻呼控制器。
202: 锚定寻呼控制器向锚定鉴权器发送空闲模式进入状态改变请求消 息; 锚定鉴权器收到该消息后判断是否允许该终端进入空闲模式: 如果允许, 锚定鉴权器保存锚定寻呼控制器标识。
203 : 锚定鉴权器发送空闲模式进入状态改变响应消息给锚定寻呼控制 器; 该响应消息中带有锚定鉴权器的判断结果(结果标识) ; 如果判断结果 表明允许终端进入空闲模式,则锚定寻呼控制器保存终端的移动性限制参数, 以及需要在终端的空闲模式下保存的其它信息。
如果不允许终端进入空闲模式, 则终端将保持激活状态, 在这种情况下 锚定寻呼控制器可以不保存终端的移动性限制参数, 以节省存储资源。
204: 锚定寻呼控制器发送空闲模式进入状态改变响应消息给寻呼代理; 该消息可能会经过一个或多个中继寻呼控制器到达寻呼代理。
第二实施例
图 3是本发明第二实施例空闲模式进入方法流程图; 本实施例中, 选择 锚定鉴权器在终端进入空闲模式后保存该终端的移动性限制参数, 寻呼代理 通过空闲模式进入状态改变请求消息将终端的移动性限制参数发送给锚定鉴 权器; 该方法包括如下步骤:
301 : 寻呼代理发送空闲模式进入状态改变请求消息给锚定寻呼控制器
(每个锚定寻呼控制器都有一个对应的位置寄存器, 位置寄存器用来记录空 闲模式下终端的信息) ; 该消息中带有当前基站标识, 寻呼参数, 空闲模式 保留信息, 以及终端的移动性限制参数等; 该消息可能会经过一个或多个中 继寻呼控制器到达锚定寻呼控制器。
302: 锚定寻呼控制器向锚定鉴权器发送空闲模式进入状态改变请求消 息; 锚定鉴权器收到该消息后判断是否允许该终端进入空闲模式: 如果允许, 锚定鉴权器保存锚定寻呼控制器标识以及终端的移动性限制参数。 303 : 锚定鉴权器发送空闲模式进入状态改变响应消息给锚定寻呼控制 器; 该响应消息中带有锚定鉴权器的判断结果(结果标识) ; 如果判断结果 表明允许终端进入空闲模式, 则锚定寻呼控制器保存除终端的移动性限制参 数以外的其它需要在终端的空闲模式下保存的信息。
304: 锚定寻呼控制器发送空闲模式进入状态改变响应消息给寻呼代理; 该消息可能会经过一个或多个中继寻呼控制器到达寻呼代理。
第三实施例
图 4是本发明第三实施例空闲模式进入方法流程图; 本实施例中, 锚定 寻呼控制器和锚定鉴权器位于相同的功能实体(记作锚定寻呼控制器 /锚定鉴 权器) , 选择该功能实体在终端进入空闲模式后保存该终端的移动性限制参 数, 寻呼代理通过空闲模式进入状态改变请求消息将终端的移动性限制参数 发送给该功能实体; 该方法包括如下步骤:
401: 寻呼代理发送空闲模式进入状态改变请求消息给锚定寻呼控制器 (每个锚定寻呼控制器都有一个对应的位置寄存器, 位置寄存器用来记录空 闲模式下终端的信息)/锚定鉴权器; 该消息中带有当前基站标识,寻呼参数, 空闲模式保留信息, 以及终端的移动性限制参数等; 该消息可能会经过一个 或多个中继寻呼控制器到达锚定寻呼控制器 /锚定鉴权器。
402: 锚定寻呼控制器 /锚定鉴权器收到空闲模式进入状态改变请求消息 后, 判断是否允许该终端进入空闲模式: 如果允许, 则锚定寻呼控制器 /锚定
第四实施例
图 5是本发明第四实施例空闲模式进入方法流程图; 本实施例中, 选择 锚定寻呼控制器在终端进入空闲模式后保存该终端的移动性限制参数, 锚定 鉴权器通过空闲模式进入状态改变响应消息将终端的移动性限制参数发送给 锚定寻呼控制器; 该方法包括如下步骤: 501: 寻呼代理发送空闲模式进入状态改变请求消息给锚定寻呼控制器 (每个锚定寻呼控制器都有一个对应的位置寄存器, 位置寄存器用来记录空 闲模式下终端的信息) ; 该消息中带有当前基站标识, 寻呼参数, 空闲模式 保留信息等; 该消息可能会经过一个或多个中继寻呼控制器到达锚定寻呼控 制器。
502: 锚定寻呼控制器发送空闲模式进入状态改变请求消息给锚定鉴权 器; 锚定鉴权器收到该消息后判断是否允许该终端进入空闲模式: 如果允许, 锚定鉴权器保存锚定寻呼控制器标识。
503 : 锚定鉴权器发送空闲模式进入状态改变响应消息给锚定寻呼控制 器; 该响应消息中带有锚定鉴权器的判断结果(结果标识) 以及锚定鉴权器 中保存的该终端的移动性限制参数; 如果判断结果表明允许终端进入空闲模 式, 则锚定寻呼控制器保存终端的移动性限制参数, 以及需要在终端的空闲 模式下保存的其它信息。
如果不允许终端进入空闲模式, 则终端将保持激活状态, 在这种情况下 锚定寻呼控制器可以不保存终端的移动性限制参数, 以节省存储资源。
504: 锚定寻呼控制器发送空闲模式进入状态改变响应消息给寻呼代理; 该消息可能会经过一个或多个中继寻呼控制器到达寻呼代理。
根据本发明的基本原理, 上述实施例还可以有多种变化方式, 例如: (一)寻呼代理发送的空闲模式进入状态改变请求消息中还可以携带除 当前基站标识以外的其它位置信息, 例如: 接入服务网标识。
(二)锚定寻呼控制器或锚定鉴权器在保存终端的移动性限制参数前, 还可以根据终端的当前位置信息以及移动性限制参数进行移动性限制判断, 以判断当前终端的位置信息是否满足移动性限制条件 (即判断位置信息是否 属于允许接入的基站标识或接入服务网标识, 或禁止接入的基站或接入服务 网) ; 如果满足, 则保存终端的移动性限制参数; 如果不满足, 则执行以下 不满足移动性限制条件的处理: A )按照现有的 WiMAX 系统的空闲模式进入失败处理方法进行处理; 即返回不允许终端进入空闲模式的响应消息, 在该响应消息中可以添加用于 表示由于移动性限制而导致空闲模式进入失败的原因值, 以便终端进行相应 的错误处理; 和 /或
B )触发当前终端的退网流程; 和 /或
C ) 向终端发送已经超出移动性限制区域的通知消息。
此外, 如果选择在锚定寻呼控制器保存终端移动性限制参数, 上述移动 性限制判断操作可以在锚定寻呼控制器接收到寻呼代理发送的空闲模式进入 状态改变请求消息时进行, 当判定当前终端的位置信息不满足移动性限制条 件的情况下, 可以不进行后续的步骤 203、 204; 而直接执行不满足移动性限 制条件的处理, 以减少不必要的处理。 当然上述移动性限制判断操作也可以 在接收到锚定鉴权器发送的空闲模式进入状态改变响应消息时进行, 在这种 情况下, 若判定当前终端的位置信息不满足移动性限制条件, 则执行不满足 移动性限制条件的处理。
此外, 如果选择在锚定鉴权器保存终端移动性限制参数, 可以将上述移 动性限制判断的结果包含在空闲模式进入状态改变响应消息中发送给锚定寻 呼控制器, 由锚定寻呼控制器选择进行不满足移动性限制条件的处理。
(三)对于第四实施例, 如果锚定鉴权器不允许终端进入空闲模式, 可 以不将该终端的移动性限制参数包含在空闲模式进入状态改变响应消息中发 送给锚定寻呼控制器。
工业实用性
综上所述, 釆用本发明的方法, 可以实现在终端进入空闲模式时保存该 终端的移动性限制参数, 以便在后续的处理流程中对该终端进行移动性限制 判断, 进而避免造成错误地允许终端在非授权区域由空闲模式退出至激活模 式、 或进行位置更新等问题。

Claims

权 利 要 求 书
1、 一种空闲模式进入方法, 应用于微波接入全球互操作性认证系统中, 其特征在于, 该方法包括:
在终端由激活模式转入空闲模式的过程中, 所述终端的寻呼代理将所述 终端的移动性限制参数发送给移动性限制参数存储网元;
所述移动性限制参数存储网元是: 锚定寻呼控制器, 或锚定鉴权器, 或 包含锚定寻呼控制器功能和锚定鉴权器功能的功能实体。
2、 如权利要求 1所述的方法, 其特征在于,
所述寻呼代理通过将所述移动性限制参数包 闲模式进入状态改变 请求消息中发送给所述移动性限制参数存储网元 ,
3、 如权利要求 2所述的方法, 其特征在于,
如果所述移动性限制参数存储网元是锚定寻呼控制器 , 在锚定寻呼控制 器接收到所述空闲模式进入状态改变请求消息后, 向锚定鉴权器发送空闲模 式进入状态改变请求消息; 并且仅在接收到锚定鉴权器允许所述终端进入空 闲模式的响应消息时, 保存所述移动性限制参数;
如果所述移动性限制参数存储网元是锚定鉴权器、 或包含锚定寻呼控制 器功能和锚定鉴权器功能的功能实体, 在所述移动性限制参数存储网元接收 到所述空闲模式进入状态改变请求消息后, 判断是否允许所述终端进入空闲 模式; 并且仅在判定允许所述终端进入空闲模式时, 保存所述移动性限制参 数。
4、 如权利要求 1所述的方法, 其特征在于,
所述移动性限制参数包括以下一种或多种: 允许或禁止接入的基站标识 列表、 允许或禁止接入的接入服务网标识列表、 连续切换的次数、 允许切换 的最小时间间隔、 允许或禁止的服务基站重定向区域、 重定向区域业务连续 性支持标识。
5、 如权利要求 2所述的方法, 其特征在于,
所述空闲模式进入状态改变请求消息中包含所述终端当前的位置信息; 所述移动性限制参数存储网元在保存所述移动性限制参数前, 还根据所 述位置信息和所述移动性限制参数对所述终端进行移动性限制判断; 若判定 所述终端不满足移动性限制条件, 则执行:
向所述寻呼代理返回空闲模式进入失败的响应消息; 和 /或
触发所述终端的退网流程; 和 /或
向所述终端发送已经超出移动性限制区域的通知消息。
6、 如权利要求 5所述的方法, 其特征在于,
所述位置信息包括基站标识, 所述移动性限制参数包括: 允许接入的基 站标识, 或禁止接入的基站标识; 且仅当所述基站标识属于移动性限制参数 中的所述允许接入的基站标识, 或不属于移动性限制参数中的所述禁止接入 的基站标识时, 判定所述终端满足移动性限制条件; 或
所述位置信息包括接入服务网标识, 所述移动性限制参数包括: 允许接 入的接入服务网标识, 或禁止接入的接入服务网标识; 仅当所述接入服务网 标识属于移动性限制参数中的所述允许接入的接入服务网标识, 或不属于移 动性限制参数中的所述禁止接入的接入服务网标识时, 判定所述终端满足移 动性限制条件。
7、 一种空闲模式进入方法, 应用于微波接入全球互操作性认证系统中, 其特征在于, 该方法包括:
在终端由激活模式转入空闲模式的过程中, 所述终端的锚定鉴权器将所 述终端的移动性限制参数包含在空闲模式进入状态改变响应消息中发送给所 述终端的锚定寻呼控制器;
所述锚定寻呼控制器接收到所述空闲模式进入状态改变响应消息后保存 所述移动性限制参数。
8、 如权利要求 7所述的方法, 其特征在于,
发送所述空闲模式进入状态改变响应消息前, 所述锚定鉴权器还判断是 否允许所述终端进入空闲模式; 且仅在允许所述终端进入空闲模式时, 所述 锚定鉴权器才将所述终端的移动性限制参数包含在空闲模式进入状态改变响 应消息中发送给所述锚定寻呼控制器;
仅在接收到的所述空闲模式进入状态改变响应消息中包含所述锚定鉴权 器允许所述终端进入空闲模式的信息时, 所述锚定寻呼控制器才保存所述终 端的移动性限制参数。
9、 如权利要求 7所述的方法, 其特征在于,
在所述终端由激活模式转入空闲模式的过程中, 所述锚定鉴权器发送所 述空闲模式进入状态改变响应消息前, 还包括如下步骤: 所述终端的寻呼代 理向所述锚定寻呼控制器发送包含所述终端当前的位置信息的空闲模式进入 状态改变请求消息;
所述锚定寻呼控制器在保存所述移动性限制参数前, 还根据所述位置信 息和所述移动性限制参数对所述终端进行移动性限制判断; 若判定所述终端 不满足移动性限制条件, 则执行:
向所述寻呼代理返回空闲模式进入失败的响应消息; 和 /或
触发所述终端的退网流程; 和 /或
向所述终端发送已经超出移动性限制区域的通知消息。
10、 如权利要求 9所述的方法, 其特征在于,
所述位置信息包括基站标识, 所述移动性限制参数包括: 允许接入的基 站标识, 或禁止接入的基站标识; 且仅当所述基站标识属于移动性限制参数 中的所述允许接入的基站标识, 或不属于移动性限制参数中的所述禁止接入 的基站标识时, 判定所述终端满足移动性限制条件; 或
所述位置信息包括接入服务网标识, 所述移动性限制参数包括: 允许接 入的接入服务网标识, 或禁止接入的接入服务网标识; 仅当所述接入服务网 标识属于移动性限制参数中的所述允许接入的接入服务网标识, 或不属于移 动性限制参数中的所述禁止接入的接入服务网标识时, 判定所述终端满足移 动性限制条件。
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