首页> 外文期刊>Communications Letters, IEEE >Optimal Training Signal Design for Estimation of Correlated MIMO Channels in Two-Way Amplify-and-Forward Relay Systems
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Optimal Training Signal Design for Estimation of Correlated MIMO Channels in Two-Way Amplify-and-Forward Relay Systems

机译:双向放大转发中继系统中相关MIMO信道估计的最佳训练信号设计

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摘要

In this study, we design a training signal for a correlated two-way amplify-and-forward (AF) relay channel, where the relay system consists of two sources and one relay, and each terminal is equipped with multiple antennas. In the system, given that a mean square error (MSE) exists at each source, we minimize the sum of the two MSEs. In particular, we first derive a linear minimum MSE channel estimator with an arbitrary training signal. Second, we formulate the training signal design problem to minimize the sum of the MSEs of the two sources. Finally, we present the optimal structure of the training signal. The optimal training signal is obtained numerically, and a suboptimal training signal is obtained in a closed form. The simulation results show that the MSE performance of the closed-form training signal is almost the same as that of the optimal training signal.
机译:在这项研究中,我们为相关的双向放大转发(AF)中继信道设计了一个训练信号,该中继系统由两个源和一个中继组成,每个终端配备多根天线。在系统中,假设每个源均存在均方误差(MSE),我们将两个MSE的总和最小化。特别地,我们首先导出具有任意训练信号的线性最小MSE信道估计器。其次,我们制定训练信号设计问题,以最小化两个来源的MSE的总和。最后,我们提出了训练信号的最佳结构。通过数值获得最佳训练信号,并以封闭形式获得次优训练信号。仿真结果表明,闭式训练信号的MSE性能与最优训练信号的MSE性能几乎相同。

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