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Robust Minimax MSE Transceiver and Power Splitting Design for Multiuser MIMO SWIPT: An LMI Approach

机译:多用户MIMO SWIPT的强大MIMIMAX MSE收发器和功率分裂设计:LMI方法

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This paper proposes a robust joint transceiver and power splitting (PS) design according to a minimax mean-squar-error (MSE) scheme for multiuser multi- input multi-output (MU-MIMO)simultaneous wireless information and power transfer (SWIPT) system. The proposed scheme considers channel uncertainty as a bound on the spectral matrix norm of each estimated error. Since the proposed robust minimax MSE design problem jointly optimizes the precoder, the equalizers and the PS factors, the proposed design problem is non-convex and non-deterministic polynomial-time hard (NP-hard). Thus, we transform the original optimization problem into an iteratively linear matrix inequalities (LMIs)- constrained optimization problem, which can be solved efficiently by the convex optimization toolbox. According to the simulation results of the MU-MIMO PS SWIPT wireless system with the benchmark of robust precoder, the proposed method can validate the theoretical analysis to achieve robust transceiver design effectively.
机译:本文根据多用户多输入多输出(MU-MIMO)同时无线信息和电力传输(SWIPT)系统,提出了一种坚固的联合收发器和功率分割(PS)设计。 。该方案认为渠道不确定性作为每个估计误差的频谱矩阵规范的绑定。由于提出的鲁棒Minimax MSE设计问题共同优化了预编码器,均衡器和PS因子,所提出的设计问题是非凸的和非确定性多项式 - 时(NP-HARD)。因此,我们将原始优化问题转换为迭代线性矩阵不等式(LMIS) - 受限优化问题,其可以通过凸优化工具箱有效地解决。根据MU-MIMO PS SWIPT无线系统的仿真结果,具有鲁棒的预编码器的基准,所提出的方法可以验证有效实现鲁棒收发器设计的理论分析。

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