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Throughput Analysis and Optimization of Wireless-Powered Multiple Antenna Full-Duplex Relay Systems

机译:无线多天线全双工中继系统的吞吐量分析与优化

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We consider a full-duplex (FD) decode-and-forward system in which the time-switching protocol is employed by the multiantenna relay to receive energy from the source and transmit information to the destination. The instantaneous throughput is maximized by optimizing receive and transmit beamformers at the relay and the time-split parameter. We study both optimum and suboptimum schemes. The reformulated problem in the optimum scheme achieves closed-form solutions in terms of transmit beamformer for some scenarios. In other scenarios, the optimization problem is formulated as a semidefinite relaxation problem and a rank-one optimum solution is always guaranteed. In the suboptimum schemes, the beamformers are obtained using maximum ratio combining, zero-forcing, and maximum ratio transmission. When beamformers have closed-form solutions, the achievable instantaneous and delay-constrained throughput are analytically characterized. Our results reveal that beamforming increases both the energy harvesting and loop interference suppression capabilities at the FD relay. Moreover, simulation results demonstrate that the choice of the linear processing scheme as well as the time-split plays a critical role in determining the FD gains.
机译:我们考虑一个全双工(FD)解码和转发系统,其中多天线中继采用时间切换协议从源接收能量并将信息传输到目的地。通过优化中继器处的接收和发射波束形成器以及时间分割参数,可以使瞬时吞吐量最大化。我们研究最优方案和次优方案。在某些情况下,在最佳方案中重新制定的问题在发射波束形成器方面实现了封闭形式的解决方案。在其他情况下,将优化问题表述为半定松弛问题,并且始终保证秩为一的最优解。在次优方案中,使用最大比率合并,强制零和最大比率传输来获得波束成形器。当波束形成器具有封闭形式的解决方案时,可以分析出可实现的瞬时和受延迟约束的吞吐量。我们的结果表明,波束成形可提高FD继电器的能量收集和环路干扰抑制能力。此外,仿真结果表明,线性处理方案的选择以及时间分割在确定FD增益中起着至关重要的作用。

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