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Robust Simultaneous Wireless Information and Power Transfer in Beamspace Massive MIMO

机译:Beamspace大规模MIMO中强大的无线信息和电力传输

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摘要

We investigate the worst-case robust beamforming for simultaneous wireless information and power transfer in a multiuser beamspace massive multiple-input multiple-output (MIMO) system. The objective is to minimize the transmit power of the base station subject to the individual signal-to-interference-plus-noise ratio and the energy-harvesting constraints under imperfect channel state information. Instead of directly resorting to semi-definite relaxation, we convert the initial non-convex optimization to a power allocation problem, which greatly reduces the computational complexity. The beamforming vectors are proven to be scaled versions of the estimated channels. The optimal scaling factors are then derived in closed-form. The simulations demonstrate that the proposed robust beamforming method achieves the globally optimal point for the initial design when the channel estimation errors are small while leads to satisfactory performance when the channel estimation errors are large.
机译:我们调查了多用户Beamspace中同时无线信息和功率传输的最坏情况的稳健波束成形大量多输入多输出(MIMO)系统。目的是在不完美信道状态信息下最小化经受各个信号到干扰的基站的发射功率和受能量收集约束。我们不能直接诉诸半明确放松,而是将初始非凸优化转换为功率分配问题,这大大降低了计算复杂性。被证明的波束成形矢量被证明是估计信道的缩放版本。然后以闭合形式导出最佳缩放因子。仿真表明,当信道估计误差小时,所提出的鲁棒波束成形方法实现了初始设计的全局最优点,而当信道估计误差大时导致令人满意的性能。

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