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首页> 外文期刊>IEEE transactions on wireless communications >Nonlinear MIMO Transceivers Improve Wireless-Powered and Self-Interference-Aided Relaying
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Nonlinear MIMO Transceivers Improve Wireless-Powered and Self-Interference-Aided Relaying

机译:非线性MIMO收发器改善了无线供电和自干扰辅助中继

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摘要

This paper investigates the design of robust nonlinear transceivers conceived for multiple-input multiple-output full-duplex wireless-powered relay networks in the face of realistic imperfect channel state information (CSI). A novel self-energy recycling aided relaying protocol is employed, whereby the relay node benefits from energy harvesting (EH) gleaned from the self-interfering link in addition to its primary energy. The proposed nonlinear transceiver relies on a Tomlinson-Harashima (TH) precoder along with an amplify-and-forward (AF) relaying matrix and a linear receiver, where the TH precoder is composed of a feedback matrix and a source precoding matrix. Two different criteria are considered for the robust design of the nonlinear transceiver in the presence of channel estimation errors modeled by the Gaussian distribution. The first one aims to minimize the mean-squared-error (MSE) at the destination subject to a transmit power constraint at the source and an EH constraint at the relay. The resultant optimization problem is converted to four subproblems and solved via an alternating optimization (AO) algorithm that iteratively updates the transceiver coefficients by sequentially addressing each subproblem, while keeping the other matrix variables fixed. The second design criterion aims to minimize the transmit power at the source under both MSE and EH constraints. Similarly, an AO-based iterative algorithm is proposed for solving this problem. Our simulation results show that the robust design advocated is capable of alleviating the effects of CSI errors, hence improving the robustness of the system over that of the corresponding linear designs.
机译:面对现实的不完美信道状态信息(CSI),本文研究了为多输入多输出全双工无线中继网络构想的健壮的非线性收发器的设计。采用了一种新颖的自能量回收辅助中继协议,该中继节点除了其主要能量之外,还受益于自干扰链路收集的能量收集(EH)。提出的非线性收发器依赖于Tomlinson-Harashima(TH)预编码器以及放大转发(AF)中继矩阵和线性接收器,其中TH预编码器由反馈矩阵和源预编码矩阵组成。在存在由高斯分布建模的信道估计误差的情况下,对于非线性收发器的鲁棒设计,考虑了两种不同的标准。第一个目的是使目标位置的均方误差(MSE)最小,这要受源头的发射功率约束和中继器的EH约束的影响。最终的优化问题被转换为四个子问题,并通过交替优化(AO)算法解决,该算法通过依次寻址每个子问题来迭代更新收发器系数,同时保持其他矩阵变量不变。第二个设计标准旨在最小化在MSE和EH约束下的信号源发射功率。同样,提出了一种基于AO的迭代算法来解决该问题。我们的仿真结果表明,所提倡的稳健设计能够减轻CSI错误的影响,因此与相应的线性设计相比,可以提高系统的稳健性。

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