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    • 2. 发明授权
    • Method and apparatus for providing local breakout in a mobile network
    • 在移动网络中提供本地突围的方法和装置
    • US09198220B2
    • 2015-11-24
    • US12674390
    • 2007-08-20
    • Shinta SugimotoRyoji KatoToshikane Oda
    • Shinta SugimotoRyoji KatoToshikane Oda
    • H04W4/00H04W80/04H04W8/08H04W8/12H04W88/16
    • H04W80/04H04W8/082H04W8/085H04W8/12H04W88/16
    • There is provided a Local Breakout Gateway node for use in a hierarchical mobile network. The node comprises a database, which stores a plurality of Local Breakout Policy rules. The node further comprises a receiver for receiving an IP packet from a Mobile Node attached to the network at which the node is located, the network being a visited network for the Mobile Node. The node further comprises means for selecting a Local Breakout Policy from the plurality of Local Breakout Policy rules, and means to apply the selected Local Breakout Policy to the received IP packet. The node further comprises a Network Address translation function to apply a Network Address Translation to the received IP packet, and a transmitter for sending the IP packet to a destination according to the applied Local Breakout Policy.
    • 提供了用于分级移动网络中的本地突围网关节点。 该节点包括存储多个本地突围策略规则的数据库。 节点还包括接收器,用于从附接到节点所位于的网络的移动节点接收IP分组,该网络是用于移动节点的访问网络。 节点还包括用于从多个本地突围策略规则中选择本地突围策略的装置,以及将所选择的本地突围策略应用于所接收的IP分组的装置。 该节点还包括网络地址转换功能,以将网络地址转换应用于所接收的IP分组;以及发射机,用于根据所应用的本地突围策略将IP分组发送到目的地。
    • 4. 发明授权
    • Service node, control method thereof, user node, and control method thereof
    • 服务节点,其控制方法,用户节点及其控制方法
    • US08661097B2
    • 2014-02-25
    • US13123251
    • 2008-10-10
    • Ryoji KatoTakeshi MatsumuraShingo MurakamiToshikane OdaShinta Sugimoto
    • Ryoji KatoTakeshi MatsumuraShingo MurakamiToshikane OdaShinta Sugimoto
    • G06F15/16
    • H04L65/1016H04L65/1006H04L65/105
    • There is provided a service node that is capable of serving a first user node in a first network including a control node. The first network is capable of communicating with a second network including a second user node. The service node comprises: a request receiving unit that receives a first user identity that identifies the first user node and a second user identity that identifies the second user node; a determining unit that determines whether a received message includes the first user identity as a destination, or the message includes auxiliary information that corresponds to the first user identity; and a modifying unit that modifies the destination of the message to the second user identity and modifies the source of the message to the first user identity in accordance with the determination result by the determining unit.
    • 提供了能够为包括控制节点的第一网络中的第一用户节点服务的服务节点。 第一网络能够与包括第二用户节点的第二网络进行通信。 所述服务节点包括:请求接收单元,其接收标识所述第一用户节点的第一用户身份和识别所述第二用户节点的第二用户身份; 确定单元,确定接收到的消息是否包括作为目的地的第一用户身份,或者该消息包括与第一用户身份相对应的辅助信息; 以及修改单元,其将消息的目的地修改为第二用户身份,并且根据确定单元的确定结果将消息的源修改为第一用户身份。
    • 6. 发明申请
    • Battery Management Control Method
    • 电池管理控制方法
    • US20120262122A1
    • 2012-10-18
    • US13088541
    • 2011-04-18
    • Tetsuo SatoTsutomu KawanoKoji KashimotoTakao HidakaTsuyoshi OtaRyoji Kato
    • Tetsuo SatoTsutomu KawanoKoji KashimotoTakao HidakaTsuyoshi OtaRyoji Kato
    • H02J7/00
    • H02J7/0047G01R19/0092G01R31/3606G01R31/3686H02J7/00H02J7/0031H02J7/0068H02J2007/0037H02J2007/004
    • A battery management method and apparatus. In one embodiment of the method, a source current is divided into Ic and Icr. Ic is transmitted to and charges a battery. A first voltage is generated that is related to Icr. The first voltage is converted into a first digital signal. A processing unit receives and processes the first digital signal in accordance with instructions stored in a memory. The transmission of Ic to the battery is interrupted in response to the processing unit processing the first digital signal. Current provided by the battery is divided into Idc and Idcr. Idc is transmitted to a device. A second voltage is generated that is related to Idcr. The second voltage is converted into a second digital signal. The processing unit receives and processes the second digital signal in accordance with instructions stored in the memory. The transmission of Idc to the battery is interrupted in response to the processing unit processing the second digital signal.
    • 一种电池管理方法和装置。 在该方法的一个实施例中,源电流被分为Ic和Icr。 Ic被传输到电池并对其充电。 产生与Icr有关的第一个电压。 第一电压被转换成第一数字信号。 处理单元根据存储在存储器中的指令接收并处理第一数字信号。 响应于处理单元处理第一数字信号,Ic对电池的传输中断。 电池提供的电流分为Idc和Idcr。 Idc被发送到设备。 产生与Idcr相关的第二电压。 第二电压被转换为第二数字信号。 处理单元根据存储在存储器中的指令接收和处理第二数字信号。 响应于处理单元处理第二数字信号,Idc向电池的传输中断。
    • 7. 发明申请
    • Multihome support method and apparatus
    • 多功能支持方法和装置
    • US20100260123A1
    • 2010-10-14
    • US12739832
    • 2007-10-26
    • Shinta SugimotoRyoji KatoToshikane Oda
    • Shinta SugimotoRyoji KatoToshikane Oda
    • H04W72/04
    • H04W60/005H04L29/12952H04L61/6077H04W8/085H04W8/087H04W80/04H04W88/182
    • A method of facilitating multihoming in the case of a mobile node possessing an Upper Layer Identifier belonging to a home network, where the mobile node is assigned a Global Mobility Management anchor within the home network and a Local Mobility Management anchor within a visited network. The method comprises allocating to the mobile node a primary SHIM6 proxy at said Global Mobility Management anchor, and at least one secondary SHIM6 proxy at said Local Mobility Management anchor. At said primary SHIM6 proxy, a SHIM6 context is established on behalf of the mobile node in respect of a peer node; and the established context is shared with said secondary SHIM6 proxy. Locator switching is then performed in respect of traffic exchanged between the mobile node and said peer node at one of said primary and secondary SHIM6 proxies.
    • 在具有属于归属网络的上层标识符的移动节点的情况下促进多宿主的方法,其中移动节点被分配在家庭网络内的全球移动性管理锚点以及受访网络内的本地移动性管理锚点。 所述方法包括向所述移动节点分配所述全局移动性管理锚点上的主要SHIM6代理以及所述本地移动性管理锚点处的至少一个辅助SHIM6代理。 在所述主SHIM6代理处,相对于对等节点代表移动节点建立SHIM6上下文; 并且所建立的上下文与所述次级SHIM6代理共享。 然后针对所述主要和次要的SHIM6代理之一在移动节点和所述对等节点之间交换的流量执行定位器切换。
    • 8. 发明申请
    • Aaa Support for Dhcp
    • Aaa支持Dhcp
    • US20080282325A1
    • 2008-11-13
    • US11568013
    • 2004-12-10
    • Johnson OyamaRyoji Kato
    • Johnson OyamaRyoji Kato
    • H04L9/32G06F15/16
    • H04L61/2015H04L63/06H04L63/08H04W8/065H04W80/04
    • A basic idea is to use the AAA infrastructure to assign (S3) an appropriate DHCP server to DHCP client for the DHCP service, and transferring DHCP-related information over the AAA infrastructure for authenticating (S1) and authorizing (S4) the DHCP client for DHCP service with the assigned DHCP server. Instead of the more complex DHCP server discovery process known from the prior art, the AAA infrastructure, and more particularly a suitable AAA server or equivalent AAA component, is used for assigning an appropriate DHCP server to the DHCP client. Consequently, there is no longer any mandatory dependency on the DHCP discovery-related messages. The invention preferably provides AAA protocol support for facilitating assignment of appropriate DHCP servers and providing an out-of-band key agreement protocol for DHCP clients and servers by carrying DHCP related information facilitating the bootstrapping of DHCP authentication extension (RFC3118).
    • 一个基本思想是使用AAA基础设施将DHCP服务器(S 3)分配给DHCP客户端的适当DHCP服务器,并通过AAA基础设施传输与DHCP相关的信息,以验证(S 1)并授权(S 4) DHCP客户端与分配的DHCP服务器进行DHCP服务。 使用现有技术已知的更复杂的DHCP服务器发现过程,而不是使用AAA基础设施,更具体地,合适的AAA服务器或等效的AAA组件来为DHCP客户端分配合适的DHCP服务器。 因此,不再需要依赖DHCP发现相关的消息。 本发明优选地提供AAA协议支持,以便于分配适当的DHCP服务器,并通过携带DHCP相关信息为DHCP客户端和服务器提供带外密钥协商协议,以便于DHCP认证扩展(RFC3118)的引导。