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    • 1. 发明授权
    • Communication system and method using a relay node
    • 通信系统和方法使用中继节点
    • US07525939B2
    • 2009-04-28
    • US11213886
    • 2005-08-30
    • Tetsushi AbeHui ShiTakahiro AsaiHitoshi Yoshino
    • Tetsushi AbeHui ShiTakahiro AsaiHitoshi Yoshino
    • H04Q7/00
    • H04B7/0615H04B7/026H04B7/0842H04W40/02H04W52/46H04W88/04
    • A communication node relays a transmission signal transmitted from a desired source node to a target destination node among multiple source nodes and multiple destination nodes. The communication node includes a first unitary matrix estimation unit that estimates a first unitary matrix by performing singular value decomposition involving one or more channel matrices between the relay node and the source nodes other than the desired source node; a second unitary matrix estimation unit that estimates a second unitary matrix by performing singular value decomposition involving one or more channel matrices between the relay node and the destination nodes other than the target destination node; and a transmission unit configured to transmit a relaying signal generated by multiplying a received signal by the first and second unitary matrices toward the target destination node.
    • 通信节点将从期望的源节点发送的发送信号中继到多个源节点和多个目的地节点中的目标目的地节点。 通信节点包括第一单位矩阵估计单元,其通过执行涉及中继节点和除所需源节点之外的源节点之间的一个或多个信道矩阵的奇异值分解来估计第一单位矩阵; 第二单位矩阵估计单元,通过执行涉及所述中继节点与所述目的地节点之外的目的地节点之间的一个或多个信道矩阵的奇异值分解来估计第二单位矩阵; 以及发送单元,被配置为将通过将接收信号乘以第一和第二单位矩阵而生成的中继信号发送到目标目的地节点。
    • 2. 发明申请
    • RELAY NODE AND RELAY METHOD
    • 继电器和继电器方法
    • US20080049658A1
    • 2008-02-28
    • US11844642
    • 2007-08-24
    • Takahiro AsaiHitoshi YoshinoHui Shi
    • Takahiro AsaiHitoshi YoshinoHui Shi
    • H04B7/14
    • H04B7/2606H04B7/022H04B7/0413H04B7/155H04L1/20H04L2001/0097
    • To improve the channel capacity of an entire communication system in accordance with transmission quality of the channels of each node. A relay node has: a receiving section that receives a received signal from a source node; a channel estimation section that measures SNR of a backward channel between the source node and the relay node, and SNR of a forward channel between the relay node and a destination node; a relay selecting section that selects, from among a QR-P-ZF method, a QR-P-QR method and a ZF-P-QR method, a relay method of the relay node in accordance with the ratio between the SNRs of the backward and forward channels; a relay signal processing section that multiplies the received signal by a transmission weight matrix corresponding to the selected relay method, and thereby converts the received signal to a relay signal; and a transmitting section that transmits the relay signal to the destination node.
    • 根据每个节点的信道的传输质量来提高整个通信系统的信道容量。 中继节点具有:从源节点接收接收信号的接收部分; 信道估计部,其测量源节点与中继节点之间的反向信道的SNR,以及中继节点与目的节点之间的前向信道的SNR; 从QR-P-ZF方法中选择QR-P-QR方法和ZF-P-QR方法的中继选择部,根据所述中继节点的SNR之间的比率, 向前和向前的渠道; 中继信号处理部,将接收信号乘以与所选择的中继方式对应的发送权重矩阵,从而将接收到的信号转换为中继信号; 以及将所述中继信号发送到所述目的地节点的发送部。
    • 3. 发明授权
    • Relay node and relay method
    • 中继节点和中继方法
    • US07852798B2
    • 2010-12-14
    • US11844642
    • 2007-08-24
    • Takahiro AsaiHitoshi YoshinoHui Shi
    • Takahiro AsaiHitoshi YoshinoHui Shi
    • H04B7/14
    • H04B7/2606H04B7/022H04B7/0413H04B7/155H04L1/20H04L2001/0097
    • To improve the channel capacity of an entire communication system in accordance with transmission quality of the channels of each node. A relay node has: a receiving section that receives a received signal from a source node; a channel estimation section that measures SNR of a backward channel between the source node and the relay node, and SNR of a forward channel between the relay node and a destination node; a relay selecting section that selects, from among a QR-P-ZF method, a QR-P-QR method and a ZF-P-QR method, a relay method of the relay node in accordance with the ratio between the SNRs of the backward and forward channels; a relay signal processing section that multiplies the received signal by a transmission weight matrix corresponding to the selected relay method, and thereby converts the received signal to a relay signal; and a transmitting section that transmits the relay signal to the destination node.
    • 根据每个节点的信道的传输质量来提高整个通信系统的信道容量。 中继节点具有:从源节点接收接收信号的接收部分; 信道估计部,其测量源节点与中继节点之间的反向信道的SNR,以及中继节点与目的节点之间的前向信道的SNR; 从QR-P-ZF方法中选择QR-P-QR方法和ZF-P-QR方法的中继选择部,根据所述中继节点的SNR之间的比例, 向前和向前的渠道; 中继信号处理部,将接收信号乘以与所选择的中继方式对应的发送权重矩阵,从而将接收到的信号转换为中继信号; 以及将所述中继信号发送到所述目的地节点的发送部。
    • 7. 发明授权
    • Communication system and method using a relay node
    • 通信系统和方法使用中继节点
    • US07555035B2
    • 2009-06-30
    • US11213883
    • 2005-08-30
    • Hui ShiTetsushi AbeTakahiro AsaiHitoshi Yoshino
    • Hui ShiTetsushi AbeTakahiro AsaiHitoshi Yoshino
    • H04L25/52H04B7/14
    • H04B7/026H04B7/15528H04L1/0618H04L25/0204H04L25/0228H04L25/0246H04L25/20H04W52/46H04W88/04
    • A communication node that relays signals between a source node and a destination node includes (a) a first unitary matrix calculation unit configured to calculate a first unitary matrix based on a first channel between the source node and the relay node, (b) a second unitary matrix calculation unit configured to calculate a second unitary matrix based on a second channel between the relay node and the destination node, (c) a transformation matrix estimation unit configured to estimate a transformation matrix based on a triangular matrix derived from QR decomposition of the first and/or second channel matrix, (d) a relaying signal generator configured to generates a relaying signal by multiplying a received signal by at least one of the first unitary matrix, the second unitary matrix, and the transformation matrix, and (e) a transmission unit configured to transmit the relaying signal to the destination node.
    • 在源节点和目的地节点之间中继信号的通信节点包括:(a)第一单位矩阵计算单元,被配置为基于源节点和中继节点之间的第一信道来计算第一单位矩阵,(b)第二单元矩阵计算单元, 酉矩阵计算单元,被配置为基于中继节点和目的地节点之间的第二信道来计算第二酉矩阵,(c)变换矩阵估计单元,被配置为基于从QR分解导出的三角矩阵来估计变换矩阵 第一和/或第二信道矩阵,(d)中继信号发生器,被配置为通过将接收信号乘以第一单位矩阵,第二单位矩阵和变换矩阵中的至少一个来生成中继信号,以及(e) 发送单元,被配置为将中继信号发送到目的地节点。