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    • 12. 发明申请
    • MOBILE COMMUNICATION SYSTEM
    • 移动通信系统
    • US20120195261A1
    • 2012-08-02
    • US13389654
    • 2010-08-11
    • Katsutoshi NishidaTakashi KoshimizuToshiyuki Tamura
    • Katsutoshi NishidaTakashi KoshimizuToshiyuki Tamura
    • H04W40/00
    • H04W36/0022H04L65/1016H04L65/103H04L65/104H04W88/06
    • In a mobile communication system capable of switching between a first communication state and a second communication state, in a case of a first communication state, a VoIP media signal is exchanged between a mobile station. UE #1 and a mobile station UE #2 via an LTE radio access system and a node S-GW, a VoIP control signal is exchanged via the LTE radio access system, the node S-GW, and IMS, and in a case of a second communication state, a circuit-switched signal is exchanged between the mobile station UE #1 and an enhanced MSC/MGW via a 2G/3G radio access system, the VoIP media signal is exchanged between the enhanced MSC/MGW and the mobile station UE #2 via the node S-GW, and the VoIP control signal is exchanged between the enhanced MSC/MGW and the mobile station UE #2 via the node S-GW and the IMS.
    • 在能够在第一通信状态和第二通信状态之间切换的移动通信系统中,在第一通信状态的情况下,在移动台之间交换VoIP媒体信号。 UE#1和移动台UE#2经由LTE无线接入系统和节点S-GW,经由LTE无线接入系统,节点S-GW和IMS交换VoIP控制信号,在 第二通信状态,经由2G / 3G无线接入系统在移动台UE#1和增强型MSC / MGW之间交换电路交换信号,在增强型MSC / MGW与移动台之间交换VoIP媒体信号 经由节点S-GW的UE#2,经由节点S-GW和IMS在增强型MSC / MGW与移动台UE#2之间交换VoIP控制信号。
    • 14. 发明申请
    • MOBILE COMMUNICATION METHOD, MOBILE STATION, AND SWITCHING CENTER
    • 移动通信方法,移动站和切换中心
    • US20120094667A1
    • 2012-04-19
    • US13262968
    • 2010-04-08
    • Katsutoshi NishidaMasashi KanauchiKeisuke Suzuki
    • Katsutoshi NishidaMasashi KanauchiKeisuke Suzuki
    • H04W60/00
    • H04W60/00H04W28/18H04W88/06
    • A mobile communication method according to the present invention comprising, a step in which a mobile station transmits a first location registration request signal including capability information indicating that it is compatible with a second radio access network, to a mobile switching center housing a first radio access network, a step in which the mobile switching center transmits a location registration rejection signal, which includes information indicating that communication using a second radio access network is not allowed, to the mobile station, a step in which the mobile station transmits a second location registration request signal, which includes capability information indicating that it is not compatible with the second radio access network, to the mobile switching center in response to the location registration rejection signal and a step in which the mobile switching center performs a location registration process with respect to the first radio access network of the mobile station in response to the second location registration request signal.
    • 根据本发明的移动通信方法包括:移动台将包括指示其与第二无线接入网络兼容的能力信息的第一位置登记请求信号发送到容纳第一无线接入的移动交换中心的步骤 网络,其中移动交换中心向移动台发送包括指示不允许使用第二无线电接入网络的通信的信息的位置登记拒绝信号的步骤,其中移动台发送第二位置登记 请求信号,其包括指示其与第二无线电接入网络不兼容的能力信息,响应于位置登记拒绝信号而发送到移动交换中心;以及步骤,其中移动交换中心执行相对于 m的第一个无线电接入网络 响应于第二位置注册请求信号。
    • 16. 发明申请
    • Access Router, Service Control System, and Service Control Method
    • 接入路由器,业务控制系统和业务控制方式
    • US20090238193A1
    • 2009-09-24
    • US11913437
    • 2006-05-16
    • Katsutoshi NishidaShin-ichi IsobeNaoki Matsubara
    • Katsutoshi NishidaShin-ichi IsobeNaoki Matsubara
    • H04L12/56
    • H04W8/08H04W80/04H04W88/005
    • A service is transparently provided to a mobile terminal device without the mobile terminal device knowing an address of a service providing device or a device which relays a packet in a network. A packet between the service providing device which provides a service and a mobile terminal device 10 which receives the service is relayed by a mobility control node 21. An access router 12 inquires of another device about information on the mobility control node 21, and holds correspondence information between information obtained by an inquiry result and identification information of the mobile terminal device 10 in a table. Transfer of a packet between the mobile control node 21 and the mobile terminal device 10 is controlled based on the correspondence information held in the table. With this configuration, the network can transparently provide the service to the mobile terminal device without the mobile terminal device knowing the address of the device which relays the packet in the network.
    • 移动终端设备透明地提供服务,而无需移动终端设备知道服务提供设备的地址或中继网络中的分组的设备。 提供服务的服务提供设备和接收服务的移动终端设备10之间的分组由移动性控制节点21中继。接入路由器12向另一设备询问关于移动性控制节点21的信息,并且保持对应 通过查询结果获得的信息与表中的移动终端装置10的识别信息之间的信息。 基于保持在表中的对应信息来控制移动控制节点21和移动终端装置10之间的分组的传送。 利用该配置,网络可以透明地向移动终端设备提供服务,而无需移动终端设备知道中继网络中的分组的设备的地址。
    • 17. 发明申请
    • Communication system and communication control method
    • 通信系统和通信控制方法
    • US20050083905A1
    • 2005-04-21
    • US10928490
    • 2004-08-27
    • Katsutoshi NishidaTakatoshi Okagawa
    • Katsutoshi NishidaTakatoshi Okagawa
    • H04W40/34H04L12/701H04L29/06H04W8/04H04W8/26H04W80/04H04W88/04H04W88/18H04W92/02H04Q7/00
    • H04L29/06
    • A communication system 32 is provided with access routers 14, a location information management server 20, and a route optimization server 18. The route optimization server 18 receives a BU message from a Mobile-IP terminal 12A and receives location information of a connected access router 14A from the location information management server 20. Then the route optimization server 18 transmits the BU message to the connected access router 14A, based on the received location information of the connected access router 14A, whereby the connected access router 14A to which the communication terminal 12 is connected is notified of route optimization information. This permits the connected access router 14A to relay a packet transmitted and received between the Mobile-IP terminal 12A and the communication terminal 12, through an optimal route.
    • 通信系统32设置有接入路由器14,位置信息管理服务器20和路由优化服务器18。 路由优化服务器18从移动IP终端12A接收BU消息,从位置信息管理服务器20接收连接的接入路由器14A的位置信息。 然后,路由优化服务器18基于接收到的连接的接入路由器14A的位置信息,向连接的接入路由器14A发送BU消息,由此通知连接了通信终端12的连接的接入路由器14A 路由优化信息。 这允许连接的接入路由器14A通过最佳路由来中继在移动IP终端12A和通信终端12之间发送和接收的分组。