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    • 1. 发明申请
    • DISTRIBUTED RELAY FOR MULTI-HOP COMMUNICATION NETWORK
    • 多路通信网络的分布式继电器
    • WO2011087407A1
    • 2011-07-21
    • PCT/SE2010/050022
    • 2010-01-13
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)RÁCZ, AndrásZEE, OscarTURÁNYI, Zoltán Richárd
    • RÁCZ, AndrásZEE, OscarTURÁNYI, Zoltán Richárd
    • H04B7/26
    • H04B7/2606H04B7/155
    • Radio coverage in areas with normally poor radio conditions can be improved using distributed relay nodes to relay communications between the base station and user terminal. The distributed relay node comprises two main functional components interconnected by a local area network. The functional components of the relay node comprise a terminal part that appears to the serving base station as another user terminal, and a base station part that appears to the user terminal as a base station. The terminal part and base station part of the relay node can be remotely located and interconnected by an existing local area network based IP protocols. A packet delivery mechanism transfers data packets between the terminal part and base station part of the relay node in a manner that is transparent to the rest of the mobile communication network.
    • 通过使用分布式中继节点对基站和用户终端之间的通信进行中继,可以改善无线电条件通常较差的区域的无线覆盖。 分布式中继节点包括由局域网互联的两个主要功能组件。 中继节点的功能部件包括作为另一个用户终端向服务基站出现的终端部分和作为基站的用户终端出现的基站部分。 中继节点的终端部分和基站部分可以通过现有的基于局域网的IP协议进行远程定位和互连。 分组传送机制以对移动通信网络的其余部分是透明的方式在中继节点的终端部分和基站部分之间传送数据分组。
    • 2. 发明申请
    • BACKHAUL HEADER COMPRESSION
    • 背部压头压缩
    • WO2010147528A1
    • 2010-12-23
    • PCT/SE2009/051379
    • 2009-12-04
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)RÁCZ, AndrásTURÁNYI, Zoltán Richárd
    • RÁCZ, AndrásTURÁNYI, Zoltán Richárd
    • H04L29/06H04W28/06
    • H04W28/06H04L69/04H04W88/16H04W92/12
    • A telecommunications network, and particularly a mobility management entity (MME) (26) of the telecommunications network, performs negotiation of use of header compression over at least a portion of a backhaul link (42) extending between a base station node (28) and a serving gateway (SGW) (24). In some embodiments the backhaul link comprises a radio link. In certain bearer encapsulation embodiments having radio-interface borne backhaul links a General Packet Radio service Tunneling Protocol (GTP) tunnel traverses between the serving gateway node (24) and a relay base station node (28). In such bearer encapsulation embodiments the method further comprises handling signaling between the serving gateway node (24) and the relay base station node (28) for negotiating the use of the header compression inside the General Packet Radio service Tunneling Protocol (GTP) tunnel. In certain proxy embodiments having radio-interface borne backhaul links the backhaul link comprises a first tunnel extending between the serving gateway node (24) and a donor base station node (70) and a further (e.g., second) tunnel extending between the donor base station node (70) and the relay base station node (28). In such example proxy embodiments the method further comprises handling signaling between the relay base station node (28) and the donor base station node (70) for negotiating the use of the header compression inside the second tunnel, and (optionally) handling signaling between the donor base station node (70) and the serving gateway node (24) for negotiating the use of the header compression inside the first tunnel.
    • 电信网络,特别是电信网络的移动性管理实体(MME)(26)通过在基站节点(28)和基站(28)之间延伸的回程链路(42)的至少一部分来执行报头压缩的使用的协商 服务网关(SGW)(24)。 在一些实施例中,回程链路包括无线电链路。 在具有无线接口承载回程链路的某些承载封装实施例中,通用分组无线业务隧道协议(GTP)隧道在服务网关节点(24)和中继基站节点(28)之间穿越。 在这样的承载封装实施例中,该方法还包括处理服务网关节点(24)和中继基站节点(28)之间的信令,用于协商通用分组无线业务隧道协议(GTP)隧道内的报头压缩的使用。 在具有无线电接口承载回程链路的某些代理实施例中,回程链路包括在服务网关节点(24)和施主基站节点(70)之间延伸的第一隧道和在供体基站之间延伸的另外(例如,第二)隧道 站节点(70)和中继基站节点(28)。 在这样的示例性代理实施例中,该方法还包括处理中继基站节点(28)和施主基站节点(70)之间的信令,用于协商第二隧道内的报头压缩的使用,以及(可选地) 供体基站节点(70)和服务网关节点(24),用于协商在第一隧道内使用报头压缩。
    • 9. 发明公开
    • BACKHAUL HEADER COMPRESSION
    • 回程HEADERKOMPRESSION
    • EP2443804A1
    • 2012-04-25
    • EP09846267.4
    • 2009-12-04
    • Telefonaktiebolaget L M Ericsson (PUBL)
    • RÁCZ, AndrásTURÁNYI, Zoltán Richárd
    • H04L29/06H04W28/06
    • H04W28/06H04L69/04H04W88/16H04W92/12
    • A telecommunications network, and particularly a mobility management entity (MME) (26) of the telecommunications network, performs negotiation of use of header compression over at least a portion of a backhaul link (42) extending between a base station node (28) and a serving gateway (SGW) (24). In some embodiments the backhaul link comprises a radio link. In certain bearer encapsulation embodiments having radio-interface borne backhaul links a General Packet Radio service Tunneling Protocol (GTP) tunnel traverses between the serving gateway node (24) and a relay base station node (28). In such bearer encapsulation embodiments the method further comprises handling signaling between the serving gateway node (24) and the relay base station node (28) for negotiating the use of the header compression inside the General Packet Radio service Tunneling Protocol (GTP) tunnel. In certain proxy embodiments having radio-interface borne backhaul links the backhaul link comprises a first tunnel extending between the serving gateway node (24) and a donor base station node (70) and a further (e.g., second) tunnel extending between the donor base station node (70) and the relay base station node (28). In such example proxy embodiments the method further comprises handling signaling between the relay base station node (28) and the donor base station node (70) for negotiating the use of the header compression inside the second tunnel, and (optionally) handling signaling between the donor base station node (70) and the serving gateway node (24) for negotiating the use of the header compression inside the first tunnel.