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Wirelessly-Powered Full-Duplex AF MIMO Relay Systems Based on Antenna Switching

机译:基于天线切换的无线供电的全双工AF MIMO中继系统

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This letter proposes a novel wirelessly-powered full-duplex amplify-and-forward (AF) relaying scheme, where the multi-antenna relay can harvest energy from the source and recycle energy from itself by using antenna switching protocol. Unlike conventional fixed antennas relay that can only harvest and recycle energy at the second transmission phase, in the proposed scheme, the relay can also harvest energy at the first transmission phase with dynamic antenna combination. To maximize the spectral efficiency of the system, the transmit power of the source, the beamforming matrix at the relay and its antenna allocation are jointly optimized. Also, to tackle the discontinuity and nonconvexity of the optimization problem, a semi-analytical iterative algorithm is developed. In particular, for a fixed antenna combination at the relay, a closed-form solution to the source power allocation and the beamforming matrix at the relay are derived. Then, a greedy antenna switching algorithm is designed to obtain the best antenna combination. Simulation results demonstrate the near optimality of the proposed algorithm and the superiority of the proposed scheme.
机译:这封信提出了一种新型无线动力的全双工放大和前进(AF)中继方案,其中多天线继电器可以通过使用天线切换协议从源收集能量并从自身回收能量。与传统的固定天线中继不同,在所提出的方案中,只能在第二传输阶段收获和再循环能量,中继还可以利用动态天线组合收集第一传输相位的能量。为了最大化系统的频谱效率,源的发射功率,继电器处的波束成形矩阵及其天线分配是联合优化的。此外,为了解决优化问题的不连续性和非凸起,开发了一种半分析迭代算法。特别地,对于继电器处的固定天线组合,导出到源功率分配和中继处的波束形成矩阵的闭合形式解决方案。然后,贪婪的天线切换算法旨在获得最佳的天线组合。仿真结果证明了所提出的算法的近优先效力和所提出的方案的优越性。

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