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    • 7. 发明申请
    • WIRELESS COMMUNICATION RELAY STATION APPARATUS, WIRELESS COMMUNICATION BASE STATION APPARATUS, WIRELESS COMMUNICATION MOBILE STATION
    • 无线通信中继站装置,无线通信基站装置,无线通信移动站
    • US20120093064A1
    • 2012-04-19
    • US13264197
    • 2010-04-26
    • Ayako HoriuchiSeigo NakaoKenichi MiyoshiMegumi IchikawaAkihiko NishioYasuaki Yuda
    • Ayako HoriuchiSeigo NakaoKenichi MiyoshiMegumi IchikawaAkihiko NishioYasuaki Yuda
    • H04B7/14H04W72/04
    • H04W72/1205H04B7/15521H04J11/005H04L5/0007H04L5/0037H04L5/0064H04L5/0089H04L5/0094H04L25/0204H04L25/03159H04L25/03343H04W72/1252H04W84/047
    • There is provided a wireless communication relay station apparatus and a wireless communication base station apparatus capable of allocating resources dynamically to each apparatus in accordance with traffic. A wireless communication relay station apparatus according to the invention includes a receiver that receives data from the wireless communication base station apparatus or the wireless communication mobile station apparatus, and a selector that selects data, within an uplink subframe or a downlink subframe, from: first data to be relayed from the own apparatus to the wireless communication base station apparatus; second data to be relayed from the own apparatus to the wireless communication mobile station apparatus; third data to be relayed from the wireless communication base station apparatus to the own apparatus; and fourth data to be relayed from the wireless communication mobile station apparatus to the own apparatus. The receiver receives allocation information for switching transmission/reception in the own apparatus from the wireless communication mobile station apparatus within an uplink subframe or a downlink subframe. The selector switches the first data and the fourth data within the uplink subframe in accordance with the allocation information received by the receiver, or the selector switches the second data and the third data within the downlink subframe in accordance with the allocation information received by the receiver.
    • 提供一种无线通信中继站装置和无线通信基站装置,其能够根据流量动态地向各个装置分配资源。 根据本发明的无线通信中继站装置包括从无线通信基站装置或无线通信移动站装置接收数据的接收机,以及在上行链路子帧或下行链路子帧内从下列子帧选择数据的选择器: 要从本装置中继到无线通信基站装置的数据; 第二数据将从本装置中继到无线通信移动站装置; 将第三数据从无线通信基站装置中继到本装置; 以及要从无线通信移动台装置向本装置中继的第四数据。 接收机在上行链路子帧或下行链路子帧内从无线通信移动站装置接收用于在本装置中切换发送/接收的分配信息。 选择器根据接收机接收到的分配信息切换上行链路子帧内的第一数据和第四数据,或者选择器根据接收机接收到的分配信息在下行子帧内切换第二数据和第三数据 。
    • 9. 发明授权
    • Radio communication system, radio communication device, and channel correlation matrix decision method
    • 无线电通信系统,无线电通信设备和信道相关矩阵决策方法
    • US08081702B2
    • 2011-12-20
    • US12280677
    • 2007-02-28
    • Masayuki HoshinoKenichi MiyoshiYasuaki YudaKatsuhiko HiramatsuRyohei Kimura
    • Masayuki HoshinoKenichi MiyoshiYasuaki YudaKatsuhiko HiramatsuRyohei Kimura
    • H04B7/02
    • H04B7/0626H04B7/0417H04B7/0434H04B7/063H04B7/0689
    • It is possible to prevent lowering of a throughput of a radio communication system even when propagation path environments of an uplink line and downlink line are asymmetric. A maximum proper value calculation unit (115) calculates a maximum proper value from a channel matrix. A maximum proper value comparison unit (116) compares the maximum proper value with a maximum proper value of the downlink line reported separately from a base station. According to the comparison result obtained by the maximum proper value comparison unit (116), a proper mode initiative instruction unit (117) decides to pass the proper mode initiative to a communication partner or to the local device. When the initiative is to be passed to the local device, this fact is reported to a proper bam correction unit (118). When the proper beam correction unit (118) gets the proper mode initiative, the proper beam correction unit (118) corrects the correlation matrix by using the proper values of both of the downlink line and the uplink line and instructs a directivity forming unit (103) to form a proper beam according to the correlation matrix after the correction.
    • 即使上行链路和下行链路的传播路径环境不对称,也可以防止无线通信系统的吞吐量的降低。 最大适当值计算单元(115)从信道矩阵计算最大适当值。 最大适当值比较单元(116)将最大适当值与从基站分开报告的下行线路的最大适当值进行比较。 根据由最大适当值比较单元(116)获得的比较结果,正确的模式主动指示单元(117)决定将适当的模式主动通过通信对方或本地设备。 当该举措传递给本地设备时,这一事实报告给适当的巴姆纠正单位(118)。 当正确的光束校正单元(118)获得适当的模式主动时,适当的光束校正单元(118)通过使用下行链路线路和上行线路两者的适当值来校正相关矩阵,并且指示方向性形成单元(103 )根据校正后的相关矩阵形成适当的波束。