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    • 1. 发明申请
    • NETWORK ACCESS NODES
    • 网络访问号码
    • WO2010133458A1
    • 2010-11-25
    • PCT/EP2010/056285
    • 2010-05-07
    • SKYPE LIMITEDSUVI, MikaelKAAL, MadisWURM, Karlheinz
    • SUVI, MikaelKAAL, MadisWURM, Karlheinz
    • H04W12/08H04L29/14H04L29/08
    • H04W12/08H04L67/14H04L67/142H04L69/40
    • A communication system, method and program, the system comprising: one or more wireless access nodes (107) of a first communication service provider and at least one server (160) associated with a second communication service provider, interconnected via a packet-based network (106); and a wireless user terminal (104) operable to establish a session with one of the wireless access nodes of the first communication service provider, the wireless user terminal is installed with an application of the second communication service provider. The application is configured so as to: in event of failure to establish a session via one of the wireless access nodes of the first communication service provider, store information regarding the failed session at the wireless user terminal; and in event of subsequent access to the packet-based network, transmit the information regarding the failed session to the server associated with the second communication service provider over the packet-based network.
    • 一种通信系统,方法和程序,所述系统包括:第一通信服务提供商的一个或多个无线接入节点(107)和与第二通信服务提供商相关联的至少一个服务器(160),其经由基于分组的网络 (106); 以及可操作以与所述第一通信服务提供商的无线接入节点之一建立会话的无线用户终端(104),所述无线用户终端安装有所述第二通信服务提供商的应用。 该应用被配置为:在无法通过第一通信服务提供商的无线接入节点之一建立会话的情况下,在无线用户终端处存储关于故障会话的信息; 并且在随后访问基于分组的网络的情况下,通过基于分组的网络将关于故障会话的信息发送到与第二通信服务提供商相关联的服务器。
    • 2. 发明申请
    • DATA RATE CONTROL MECHANISM
    • 数据速率控制机制
    • WO2010066854A1
    • 2010-06-17
    • PCT/EP2009/066869
    • 2009-12-10
    • SKYPE LIMITEDWURM, KarlheinzRODBRO, Christoffer, Asgaard
    • WURM, KarlheinzRODBRO, Christoffer, Asgaard
    • H04L12/56
    • H04L47/10H04L43/0852H04L43/0876H04L43/106
    • A method and product for controlling a rate of transmission from a first, transmitting node (A) to a second, recipient node (B). The method comprises: transmitting a stream from the first node (A) to the second node (B) over a first network route; transmitting further data from the first node (A) to a third node (C) over a second network route substantially overlapping with the first network route; receiving feedback at the first node (A) from the third node (C) regarding transmission of the further data to the third node (C) over the second network route; and based on the feedback from the third node (C), controlling a rate of transmission of the stream to the second node (B) over the first network route. The third node (C) may not be a recipient of said stream. The rate of transmission may be controlled without feedback from the second node (B). The further data may be formed of dummy data.
    • 一种用于控制从第一发射节点(A)到第二接收节点(B)的传输速率的方法和产品。 该方法包括:通过第一网络路由从第一节点(A)向第二节点(B)发送流; 通过基本上与第一网络路由重叠的第二网络路由将另外的数据从第一节点(A)发送到第三节点(C); 在所述第三节点(C)的第一节点(A)处接收关于通过所述第二网络路由将所述另外的数据传送到所述第三节点(C)的反馈; 并且基于来自第三节点(C)的反馈,控制通过第一网络路由将流传输到第二节点(B)的速率。 第三节点(C)可以不是所述流的接收者。 可以控制传输速率,而不需要来自第二节点(B)的反馈。 另外的数据可以由伪数据形成。
    • 4. 发明申请
    • SAVING POWER IN A WIRELESS COMMUNICATION DEVICE
    • 在无线通信设备中节省电能
    • WO2012120085A1
    • 2012-09-13
    • PCT/EP2012/054021
    • 2012-03-08
    • SKYPEKERT, KaidoWURM, Karlheinz
    • KERT, KaidoWURM, Karlheinz
    • H04M1/253H04W52/02
    • H04M1/2535H04W52/0219H04W52/0248Y02D70/142Y02D70/144Y02D70/23
    • A terminal comprising: a plurality of hardware I/O units, including a wireless transceiver having a powered-up state in which at least one of a transmit path and a receive path is enabled at the expense of higher power consumption and a powered-down state in which the at least one path is disabled in favour of lower power consumption; a processing apparatus; and a storage medium coupled to the processing apparatus and storing at least a first and a second application, an operating system, a communication protocol layer and a driver layer arranged to be executed on the processing apparatus; wherein the operating system is arranged to arbitrate access by the plurality of applications to the hardware I/O units via the driver layer, including access to the wireless transceiver via the communication protocol layer and driver layer; and wherein the second application comprises a wireless traffic scheduler configured to coordinate traffic associated with the second application to be communicated via the wireless transceiver during a same continuous phase of the powered-up state as traffic associated with the first application.
    • 一种终端,包括:多个硬件I / O单元,包括具有上电状态的无线收发器,其中发射路径和接收路径中的至少一个以更高的功率消耗和掉电 至少一条路径被禁用以支持较低功耗的状态; 处理装置; 以及存储介质,其耦合到所述处理设备并且存储布置成在所述处理设备上执行的至少第一和第二应用,操作系统,通信协议层和驱动器层; 其中所述操作系统被布置为经由所述驱动器层将所述多个应用程序的访问仲裁到所述硬件I / O单元,包括经由所述通信协议层和驱动器层访问所述无线收发器; 并且其中所述第二应用包括无线业务调度器,所述无线业务调度器被配置为在与所述第一应用相关联的业务的加电状态的相同持续阶段期间,经由所述无线收发机来协调与所述第二应用相关联的流量。