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    • 1. 发明授权
    • Intra-subframe time multiplexing
    • 子帧间时间复用
    • US09014079B2
    • 2015-04-21
    • US12712413
    • 2010-02-25
    • Niclas WibergHåkan AnderssonChristian Hoymann
    • Niclas WibergHåkan AnderssonChristian Hoymann
    • H04B7/14H04B7/155
    • H04B7/15542
    • A relay node (29) radio access network (RAN) is configured to communicate using backhaul subframes over a Un radio interface with a donor base (27) station node and to communicate using access subframes over a Uu radio interface with a wireless terminal (30). Downlink backhaul subframes and downlink access subframes are transmitted over an air interface using the same frequency band, but a beginning of a selected downlink access subframe precedes a beginning of a next-in-time downlink backhaul subframe by a downlink timing advance (TA). The relay node (29) both receives downlink control information from the donor base station node and transmits downlink control information to the wireless terminal during the downlink backhaul subframe, e.g., during a time to which the downlink backhaul subframe has been allocated.
    • 中继节点(29)无线电接入网络(RAN)被配置为使用回程子帧通过Un无线电接口与施主基站(27)站节点进行通信,并且通过Uu无线电接口与无线终端(30)进行接入子帧的通信 )。 下行链路回程子帧和下行链路接入子帧通过空中接口使用相同的频带发送,但是下行链路接入子帧的开始在下一个时间下行链路回程子帧的开始之前通过下行链路定时提前(TA)。 中继节点(29)都从施主基站节点接收下行链路控制信息,并且在下行回程子帧期间,例如在已经分配了下行回程子帧的时间内,向无线终端发送下​​行链路控制信息。
    • 2. 发明申请
    • INTRA-SUBFRAME TIME MULTIPLEXING
    • 内部子帧时间多路复用
    • US20110103291A1
    • 2011-05-05
    • US12712413
    • 2010-02-25
    • Niclas WibergHåkan AnderssonChristian Hoymann
    • Niclas WibergHåkan AnderssonChristian Hoymann
    • H04B7/14
    • H04B7/15542
    • A relay node (29) radio access network (RAN) is configured to communicate using backhaul subframes over a Un radio interface with a donor base (27) station node and to communicate using access subframes over a Uu radio interface with a wireless terminal (30). Downlink backhaul subframes and downlink access subframes are transmitted over an air interface using the same frequency band, but a beginning of a selected downlink access subframe precedes a beginning of a next-in-time downlink backhaul subframe by a downlink timing advance (TA). The relay node (29) both receives downlink control information from the donor base station node and transmits downlink control information to the wireless terminal during the downlink backhaul subframe, e.g., during a time to which the downlink backhaul subframe has been allocated.
    • 中继节点(29)无线电接入网络(RAN)被配置为使用回程子帧通过Un无线电接口与施主基站(27)站节点进行通信,并且通过Uu无线电接口与无线终端(30)进行接入子帧的通信 )。 下行链路回程子帧和下行链路接入子帧通过空中接口使用相同的频带发送,但是下行链路接入子帧的开始在下一个时间下行链路回程子帧的开始之前通过下行链路定时提前(TA)。 中继节点(29)都从施主基站节点接收下行链路控制信息,并且在下行回程子帧期间,例如在已经分配了下行回程子帧的时间内,向无线终端发送下​​行链路控制信息。
    • 4. 发明授权
    • Relaying unicast and multicast data in a wireless network
    • 在无线网络中中继单播和组播数据
    • US09544045B2
    • 2017-01-10
    • US14344726
    • 2011-09-20
    • Christian HoymannJörg HuschkeMai-Anh Phan
    • Christian HoymannJörg HuschkeMai-Anh Phan
    • H04B7/14H04J1/10H04J3/08H04B7/155
    • H04B7/15557
    • A relay node for a wireless network is configured for transmissions on the basis of a radio frame with a plurality of subframes. The relay node includes a first relay path and a second relay path. The first relay path is configured to receive, in a first subframe of the subframes, first unicast transmission signals, to decode the first unicast transmission signals to obtain unicast data, and to forward the decoded unicast data by sending second unicast transmission signals in a second subframe of the subframes. The second relay path is configured to receive, in a third subframe of the subframes, multicast transmission signals, to amplify the received multicast transmission signals, and to send the amplified multicast transmission signals in the third subframe. The relay node may switch between the first relay path and the second relay path in order to implement a hybrid Decode-and-Forward and Amplify-and-Forward relaying operation.
    • 用于无线网络的中继节点被配置用于基于具有多个子帧的无线电帧的传输。 中继节点包括第一中继路径和第二中继路径。 第一中继路径被配置为在子帧的第一子帧中接收第一单播传输信号,以解码第一单播传输信号以获得单播数据,并且通过在第二单播传输信号中发送第二单播传输信号来转发解码的单播数据 子帧的子帧。 第二中继路径被配置为在子帧的第三子帧中接收多播传输信号,以放大所接收的多播传输信号,并在第三子帧中发送放大的多播传输信号。 中继节点可以在第一中继路径和第二中继路径之间切换,以实现混合解码转发和放大转发中继操作。
    • 5. 发明授权
    • Method and arrangement in a wireless communication network
    • 无线通信网络中的方法和布置
    • US09350508B2
    • 2016-05-24
    • US13521454
    • 2010-01-18
    • Jiansong GanChristian HoymannYin LiuHai WangJianfeng Wang
    • Jiansong GanChristian HoymannYin LiuHai WangJianfeng Wang
    • H04L5/00H04B7/155H04L5/14H04W56/00H04W84/04H04W72/00
    • H04L5/0053H04B7/155H04L5/14H04W56/003H04W72/00H04W84/047
    • Method and arrangement in a base station for sending control signals to a relay node. The relay node is configured to relay a data transmission from the base station to a user equipment in a subframe. The subframe comprises a first part, dedicated for downlink transmission, a second part dedicated for uplink transmission and a separating part situated between the first part and the second part. The base station, the relay node and the user equipment are comprised in a wireless communication network configured to operate according to the Time Division Duplex TDD principle. The method comprising transmitting data to the user equipment via the relay node in the first part of the subframe and transmitting the control signals, related to the transmitted data, to the relay node in the separating part between the first part and the second part of the subframe. Further, a method and arrangement in a relay node for receiving control signals from the base station are described.
    • 用于向中继节点发送控制信号的基站中的方法和装置。 中继节点被配置为在子帧中中继从基站到用户设备的数据传输。 子帧包括专用于下行链路传输的第一部分,专用于上行链路传输的第二部分和位于第一部分和第二部分之间的分离部分。 基站,中继节点和用户设备包括在被配置为根据时分双工TDD原理进行操作的无线通信网络中。 该方法包括经由子帧的第一部分中的中继节点向用户设备发送数据,并将与发送的数据相关的控制信号发送到分离部分中的中继节点,该分离部分在第一部分和第二部分之间 子帧。 此外,描述了用于从基站接收控制信号的中继节点中的方法和装置。