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    • 1. 发明授权
    • SGSN semi anchoring during the inter SGSN SRNC relocation procedure
    • SGSN在SRNC重定位过程中的半锚定
    • US06909895B2
    • 2005-06-21
    • US10000242
    • 2001-10-18
    • Heikki EinolaSerge HaumontPaul SitchJaakko Rajaniemi
    • Heikki EinolaSerge HaumontPaul SitchJaakko Rajaniemi
    • H04W36/12H04Q7/20H04L12/28
    • H04W36/12
    • The present invention proposes a method for performing a relocation procedure for a user equipment (UE) communicating in a communication network and being movable therein, said communication network comprising at least two serving nodes (SGSN1, SGSN2) of a core network of said communication network, each of which serving nodes being connected to at least one access network controller (RNC1, RNC2) of a access network of said communication network, each of which access network controllers being adapted to perform a communication with said user equipment (UE) within its coverage area, and each serving node being assigned to a respective routing area (RA1, RA2), said method comprising the steps of monitoring (S100) the occurrence of a relocation condition, deciding (S200), whether said relocation condition is an inter serving node relocation condition, switching (S400) the communication from a first access network controller (RNC1) of a first serving node (SGSN1) to a second access network controller (RNC2) of a second serving node (SGSN2), when the decision in said decision step (S200) is positive; maintaining (S600) the control of communication in the core network anchored in the first serving node (SGSN1) while the communication connection is in a first state (S500); and changing (S700) the control of communication in the core network to the second serving node (SGSN2), when a changing condition is detected (S500). The present invention also proposes a corresponding system and network element.
    • 本发明提出了一种用于对在通信网络中通信并在其中可移动的用户设备(UE)执行重定位过程的方法,所述通信网络包括所述网络的核心网络的至少两个服务节点(SGSN 1,SGSN 2) 通信网络,其中每个服务节点连接到所述通信网络的接入网络的至少一个接入网络控制器(RNC 1,RNC 2),每个接入网络控制器适于执行与所述用户设备的通信( UE),并且每个服务节点被分配给相应的路由区域(RA 1,RA 2),所述方法包括以下步骤:监视(S100)重定位条件的发生,确定(S 200) 所述重定位条件是否是服务间节点重定位条件,从第一服务节点(SGSN 1)的第一接入网络控制器(RNC 1)切换到(S 400)到第一服务节点 当所述判定步骤(S 200)中的判定为肯定时,第二服务节点(SGSN 2)的第二接入网络控制器(RNC2) 在通信连接处于第一状态时,维护(S 600)在锚定在第一服务节点(SGSN 1)的核心网络中的通信的控制(S 500); 并且当检测到改变条件时,将核心网络中的通信的控制(S 700)改变为第二服务节点(SGSN 2)(S 500)。 本发明还提出了相应的系统和网络元件。
    • 2. 发明授权
    • Location management for cellular systems
    • 蜂窝系统的位置管理
    • US06898433B1
    • 2005-05-24
    • US09763883
    • 2000-04-26
    • Jaakko RajaniemiKalle AhmavaaraHeikki EinolaJuha BäckTony HulkkonenSerge Haumont
    • Jaakko RajaniemiKalle AhmavaaraHeikki EinolaJuha BäckTony HulkkonenSerge Haumont
    • H04W36/12H04Q7/20
    • H04W8/12H04W8/06H04W36/12
    • A method for indicating a mobile station's (MS) location. A first radio network controller, RNC, acts as the mobile station's serving RNC (SRNC), for reporting the mobile station's location to the core network (CN). A second RNC acts as the mobile station's drift RNC (DRNC), for maintaining a radio connection with the mobile station. In response to fulfillment of at least one criterion in a first set of criteria, the mobile station (MS) sends location information about its location to the second RNC (DRNC) which forwards the location information to the first RNC (SRNC) for reporting to the core network (CN). There is also a second set of criteria for transforming the location information. In response to fulfillment of at least one criterion in the second set, the first RNC (SRNC) sends falsified information about the mobile station's location to the core network (CN).
    • 一种用于指示移动台(MS)位置的方法。 第一无线电网络控制器RNC用作移动台的服务RNC(SRNC),用于将移动台的位置报告给核心网络(CN)。 第二RNC用作移动台的漂移RNC(DRNC),用于维持与移动台的无线电连接。 响应于在第一组标准中满足至少一个标准,移动台(MS)将关于其位置的位置信息发送到第二RNC(DRNC),该第二RNC将位置信息转发到第一RNC(SRNC)以报告 核心网(CN)。 还有第二组标准来转换位置信息。 响应于第二组中至少一个标准的实现,第一RNC(SRNC)向核心网(CN)发送关于移动台位置的伪造信息。
    • 10. 发明授权
    • Serving network entity relocation
    • 服务网络实体搬迁
    • US06955918B2
    • 2005-10-18
    • US10203665
    • 2001-02-09
    • Serge HaumontPaul Sitch
    • Serge HaumontPaul Sitch
    • H04W36/12H04W40/24H04Q7/20
    • H04W36/12H04W40/248
    • A method (400) for relocating a serving network entity is presented. Before the relocation certain packet data information is transmitted between a terminal and a first network entity (901) at least via a second network entity (902) and via a third network entity (903). The first network entity (901) is connected to the second network entity (902) with a first path (911) and to a third network entity (903) with a second path (912), and the second network entity, which is before the relocation acting as the serving network entity, is connected to the third network entity, which is its peer network entity and after relocation acting as the serving network entity, with a third path (913). The first, second and third paths are separate paths. After the relocation said information is transmitted via the third network entity. The method is characterized in that the need for relocation of the serving network entity is communicated (403, 601) to the third network entity by the peer second network entity using the third path.
    • 提出了一种用于重新定位服务网络实体的方法(400)。 在重定位之前,至少经由第二网络实体(902)并且经由第三网络实体(903),在终端和第一网络实体(901)之间传送某些分组数据信息。 第一网络实体(901)利用具有第二路径(912)的第一路径(911)和具有第二路径(912)的第三网络实体(903)连接到第二网络实体(902),并且第二网络实体 作为服务网络实体的重定位与作为服务网络实体的第三网络实体(作为其对等网络实体)和第三路径(913)连接。 第一,第二和第三路径是独立的路径。 在重定位之后,所述信息通过第三网络实体传输。 该方法的特征在于,使用第三路径,由对等第二网络实体向第三网络实体传送服务网络实体的重定位需求(403,601)。