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Jointly optimal distributed beamforming and power control in asynchronous two-way relay networks

机译:异步双向中继网络中的联合最优分布式波束成形和功率控制

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In this paper, we consider an asynchronous two-way relay network, where multiple single-antenna relay nodes enable bi-directional communication between two single-antenna transceivers using amplify- and-forward (AF) signaling in a multiple access broadcast channel (MABC) protocol. We assume that each relaying path, which originates from one transceiver, goes through one of the relays, and ends at the other transceiver, causes a delay which can be significantly different from the delays caused by other relaying paths. Such a two-way relay channel can produce inter-symbol-interference at the two transceivers. Assuming a block transmission scheme, we use cyclic prefix insertion to eliminate inter-block-interference. Aiming to optimally obtain the relay beamforming weights and the transceivers' transmit powers, we minimize the total consumed power in the network, subject to two constraints on the transceivers' data rates. We rigorously prove that at the optimum, the end-to-end channel impulse response (CIR) must have only one non-zero tap, and hence, only those relays which contribute to that non-zero tap are switched on. We propose a simple search algorithm to optimally determine which tap of the end-to-end CIR is non-zero. Finally, we present a semi-closed-form solution for the optimal the relays' beamforming weights and the transceivers' transmit powers.
机译:在本文中,我们考虑了一个异步双向中继网络,其中多个单天线中继节点使用多址广播信道(MABC)中的放大转发(AF)信号实现两个单天线收发器之间的双向通信。 ) 协议。我们假设源自一个收发器的每个中继路径都经过一个中继,并终止于另一个收发器,从而导致一个延迟,该延迟可能与其他中继路径所引起的延迟大不相同。这样的双向中继信道可以在两个收发器处产生符号间干扰。假设有一个块传输方案,我们使用循环前缀插入来消除块间干扰。为了最佳地获得中继波束成形权重和收发器的发射功率,我们在限制收发器数据速率的两个约束的情况下,将网络中的总功耗降至最低。我们严格证明,在最佳状态下,端到端通道脉冲响应(CIR)必须只有一个非零抽头,因此,只有那些促成该非零抽头的继电器才被接通。我们提出了一种简单的搜索算法,以最佳地确定端到端CIR的哪个抽头为非零。最后,我们提出了一种半封闭形式的解决方案,以优化中继器的波束成形权重和收发器的发射功率。

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