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    • 11. 发明申请
    • METHOD AMD APPARATUS TO REDUCE SYSTEM OVERHEAD
    • 方法AMD降低系统的设备
    • WO2009045530A1
    • 2009-04-09
    • PCT/US2008/011494
    • 2008-10-03
    • NOKIA SIEMENS NETWORKS OYZHENG, HaihongBOARIU, AdrianMAHESHWARI, Shashikant
    • ZHENG, HaihongBOARIU, AdrianMAHESHWARI, Shashikant
    • H04J3/24
    • H04W28/06H04W8/26
    • System throughput is improved by decreasing the system overhead by reducing the size of control packets and data packet headers. A connection identifier (CID) is divided into a CID part 1 carried on a MAP IE and a CID part 2 carried on the generic MAC-PDU headers of one or more MAC PDUs. Versions of RCID-IE() in MAP messages may used to represent CID parti. The generic MAX PDU headers (GMH) may vary according to the length of CID part 1, and multiple GMHs in a PHY burst may have different CID parts 2. In addition, the type header field of the GMH may be shortened or removed. Alternatively, a modified GMH may have an extended type sub-header field. In addition, the GMH may use a shorter connection index or a connection index mask instead of a CID.
    • 通过减少控制数据包和数据包头的大小来降低系统开销来提高系统吞吐量。 连接标识符(CID)被划分为在MAP IE上承载的CID部分1和在一个或多个MAC PDU的通用MAC-PDU报头上承载的CID部分2。 MAP消息中的RCID-IE()版本可能用于表示CID parti。 通用MAX PDU报头(GMH)可以根据CID部分1的长度而变化,并且PHY突发中的多个GMH可以具有不同的CID部分2.另外,GMH的类型报头字段可以被缩短或去除。 或者,修改的GMH可以具有扩展类型的子头字段。 此外,GMH可以使用较短的连接索引或连接索引掩码而不是CID。
    • 12. 发明申请
    • METHOD, APPARATUS AND COMPUTER PROGRAM PRODUCT FOR PROVIDING CELL SELECTION AND PAGING MECHANISMS
    • 方法,设备和计算机程序产品提供细胞选择和分层机制
    • WO2010049756A2
    • 2010-05-06
    • PCT/IB2008/054523
    • 2008-10-30
    • NOKIA SIEMENS NETWORKS OYZHENG, HaihongMAHESHWARI, ShashikantPATIL, BasavarajWANG, Xiaoyi
    • ZHENG, HaihongMAHESHWARI, ShashikantPATIL, BasavarajWANG, Xiaoyi
    • H04W68/02
    • H04W68/00H04W8/02H04W84/045
    • An apparatus for providing a cell selection mechanism may include a processor configured to perform a scanning operation for a sub-node within a coverage area of a macro node in a radio network, receive indications of each of one or more sub-nodes proximate to a device performing the scanning operation, and enable the device to attempt connection to a selected one of the one or more sub-nodes. An apparatus for providing a paging mechanism may include a processor configured to assign a paging group identifier to a home sub-node within a coverage area of a macro node associated with at least a different paging group identifier, map an association between a terminal and at least the home sub node and an association between the home sub-node and the macro node, determine, based at least in part on the mapping and a location of the terminal in relation to a coverage area of the home sub-node and a coverage area of the macro node, a destination for a page request message, the destination including the home sub-node and any macro node associated with the paging group identifier, or any macro node associated with the different paging group identifier, and provide for generation of the page request message to the determined destination.
    • 用于提供小区选择机制的装置可以包括被配置为对无线电网络中的宏节点的覆盖区域内的子节点执行扫描操作的处理器,接收接近于一个或多个子节点的每个子节点的指示 执行所述扫描操作的装置,并使所述装置尝试连接到所述一个或多个子节点中的所选择的一个。 一种用于提供寻呼机制的装置可以包括:处理器,被配置为将寻呼组标识符分配给与至少不同的寻呼组标识符相关联的宏节点的覆盖区域内的归属子节点,映射终端与之间的关联 至少家庭子节点和归属子节点与宏节点之间的关联至少部分地基于终端与家庭子节点的覆盖区域的映射和位置以及覆盖范围 宏节点的区域,寻呼请求消息的目的地,包括归属子节点的目的地和与寻呼组标识符相关联的任何宏节点,或与不同寻呼组标识符相关联的任何宏节点,并且提供生成 页面请求消息到确定的目的地。
    • 17. 发明申请
    • TOPOLOGY AND ROUTE DISCOVERY AND MANAGEMENT FOR RELAY NETWORKS
    • 拓扑和路由发现和继电器网络管理
    • WO2008004066A2
    • 2008-01-10
    • PCT/IB2007/001788
    • 2007-06-29
    • NOKIA CORPORATIONNOKIA INC.ZHENG, Haihong
    • ZHENG, Haihong
    • H04W16/26H04W40/22H04W60/04H04W84/22
    • H04W60/04H04B7/2606H04L45/26H04W16/26H04W40/22H04W40/24H04W84/047H04W84/22
    • Various example embodiments are disclosed relating to route discovery and management in relay networks. In an example embodiment, a first message may be received (610) at a first network station (104, 108, 110, 204, 208, 210, 220, 304, 308, 310, 320, 322, 324, 330, 332, 334, 404, 408, 410, 420, 422, 424, 430, 432, 434, 440, 442, 444, 450, 452, 454, 504, 506, 508, 510, 512, 514, 516, 530, 532, 534) in a wireless network. It may be determined (620) whether the received first message includes an identifier of a second network station (104, 108, 110, 204, 208, 210, 220, 304, 308, 310, 320, 322, 324, 330, 332, 334, 404, 408, 410, 420, 422, 424, 430, 432, 434, 440, 442, 444, 450, 452, 454, 504, 506, 508, 510, 512, 514, 516, 530, 532, 534) indicating an attachment of a network node (104, 108, 110, 204, 208, 210, 220, 304, 308, 310, 320, 322, 324, 330, 332. 334, 404, 408, 410, 420, 422, 424, 430, 432, 434, 440, 442, 444, 450, 452, 454, 504, 506, 508, 510, 512, 514, 516, 530, 532, 534) to the second network station (104, 108, 110, 204, 208, 210, 220, 304, 308, 310, 320, 322, 324, 330, 332, 334, 404, 408, 410, 420, 422. 424, 430, 432, 434, 440, 442, 444, 450, 452, 454, 504, 506, 508, 510, 512. 514, 516, 530, 532, 534). The received first message may be modified (630) to include an identifier of the first network station (104, 108, 110, 204, 208, 210, 220, 304, 308, 310, 320, 322, 324, 330, 332, 334, 404, 408, 410, 420, 422, 424, 430, 432, 434, 440, 442, 444, 450, 452, 454, 504, 506, 508, 510, 512, 514, 516, 530, 532, 534) indicating an attachment of the network node (104, 108. 110, 204, 208, 210, 220, 304, 308, 310, 320, 322, 324, 330, 332, 334, 404, 408, 410, 420, 422, 424, 430, 432, 434, 440, 442, 444, 450, 452, 454, 504, 506, 508, 510, 512, 514, 516, 530, 532, 534) to the first network station (104, 108, 110, 204, 208, 210, 220, 304, 308, 310, 320, 322, 324. 330, 332, 334, 404, 408, 410, 420, 422, 424, 430, 432, 434, 440, 442, 444, 450, 452, 454, 504, 506, 508, 510, 512, 514, 516, 530, 532, 534) if it is determined that the received message does not include the identifier of the second network station (104, 108, 110, 204, 208, 210, 220, 304, 308, 310, 320, 322, 324, 330, 332, 334, 404, 408, 410, 420, 422, 424, 430, 432, 434, 440, 442, 444, 450, 452, 454, 504, 506, 508, 510, 512, 514, 516, 530, 532, 534). The received first message may be forwarded (640) to a third network station (104, 108, 110, 204, 208, 210, 220, 304, 308, 310, 320, 322, 324, 330, 332, 334, 404, 408, 410, 420, 422, 424, 430, 432, 434, 440, 442, 444, 450, 452, 454, 504, 506, 508, 510, 512, 514, 516, 530, 532, 534). Various techniques may also be provided for updating and managing a network topology, e.g., for discovering, updating, and selecting communication paths for network traffic.
    • 公开了关于中继网络中的路由发现和管理的各种示例实施例。 在一个示例性实施例中,可以在第一网络站(104,108,110,204,208,210,220,304,308,310,320,322,324,330,332,340,340,332,332,340,332,332,340,332,332,340,332,340,332,332,340,340,330,332,340,340,332,332,340,332,332,320 334,440,408,410,420,422,424,430,432,434,440,442,444,450,452,454,504,506,508,510,512,514,516,530,532,524,424,424,440,420,422,424,440,420,422,424,440,420,422,424,440,420,422,424,440,420,422,424,440,420,422,424,430 534)在无线网络中。 可以确定(620)所接收的第一消息是否包括第二网络站(104,108,110,204,208,210,220,304,308,310,320,322,324,330,332)的标识符 ,334,404,408,410,420,422,424,430,432,434,440,442,444,450,452,454,504,506,508,510,512,514,516,530,532 ,534),其指示网络节点(104,108,110,204,208,210,220,304,308,310,320,322,324,330,332,342,324,330,332,340,440,408,410,420)的附件 ,422,424,430,432,434,440,442,444,450,452,454,504,506,508,510,512,514,516,530,532,534)传送到第二网络站(104) ,108,110,204,208,210,220,304,308,310,320,322,324,330,332,334,404,408,410,420,442,442,430,432,434,440 ,442,444,450,452,454,504,506,508,510,512,514,516,530,532,534)。 接收到的第一消息可被修改(630)以包括第一网络站(104,108,110,204,208,210,220,304,308,310,320,322,324,330,332, 334,440,408,410,420,422,424,430,432,434,440,442,444,450,452,454,504,506,508,510,512,514,516,530,532,524,424,424,440,420,422,424,440,420,422,424,440,420,422,424,440,420,422,424,440,420,422,424,440,420,422,424,430 534),其指示所述网络节点(104,108,110,204,208,210,220,304,308,310,320,322,324,330,332,334,404,408,410,420,404,404,408,410,420,440,404,408,410,324,404,408,410,420,440,408,410,420,440,440,408,410,440,404,408 422,424,430,432,434,440,442,444,440,452,454,504,506,508,510,512,514,516,530,532,534的所述第一网络站, 108,110,204,208,210,220,304,308,310,320,322,324,324, 如果确定所接收的消息不包括第二网络站的标识符(104,444,444,450,452,454,504,506,508,510,512,514,516,530,532,534) ,108,110,204,208,210,220,304,308,310,320,322,324,330,332,334,404,408,410,44 20,422,424,430,432,434,440,442,444,450,452,454,504,506,508,510,512,514,516,530,532,534的数据。 接收到的第一消息可以被转发(640)到第三网络站(104,108,110,204,208,210,220,304,308,310,320,322,324,330,332,334,404,404, 408,410,420,422,424,430,432,434,440,442,444,450,452,454,504,506,508,510,512,514,516,530,532,534,454,440,422,420,420,422,424,430,432,434,440,442,444,434,440,442,444,440,424,440,424,440,422,424,440,424,422,424 还可以提供各种技术来更新和管理网络拓扑,例如用于发现,更新和选择用于网络业务的通信路径。