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Robust Multibranch Tomlinson–Harashima Precoding Design in Amplify-and-Forward MIMO Relay Systems

机译:放大转发MIMO中继系统中的稳健多分支Tomlinson–Harashima预编码设计

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摘要

This paper proposes the design of robust transceivers with Tomlinson–Harashima precoding (THP) for multiple-input–multiple-output relay systems with amplify-and-forward protocols based on a multibranch (MB) strategy. The MB strategy employs successive interference cancellation on several parallel branches, which are equipped with different ordering patterns so that each branch produces transmit signals by exploiting a certain ordering pattern. For each parallel branch, the proposed robust nonlinear transceiver design consists of THP at the source along with a linear precoder at the relay and a linear minimum-mean-square-error receiver at the destination. By taking the channel uncertainties into account, the source and relay precoders are jointly optimized to minimize the mean square error. We then employ a diagonalization method along with some attributes of matrix-monotone functions to convert the optimization problem with matrix variables into an optimization problem with scalar variables. We resort to an iterative method to obtain the solution for the relay and the source precoders via Karush–Kuhn–Tucker conditions. An appropriate selection rule is developed to choose the nonlinear transceiver corresponding to the best branch for data transmission. Simulation results demonstrate that the proposed MB-THP scheme is capable of alleviating the effects of channel state information errors and improving the robustness of the system.
机译:本文针对具有多分支(MB)策略的放大和转发协议的多输入多输出中继系统,提出了使用Tomlinson-Harashima预编码(THP)的健壮收发器的设计。 MB策略在几个并行分支上采用了连续干扰消除,这些分支配备了不同的排序模式,因此每个分支都通过利用某种排序模式来产生发射信号。对于每个并行分支,建议的鲁棒非线性收发器设计包括源端的THP,中继端的线性预编码器和目标端的线性最小均方误差接收器。通过考虑信道不确定性,共同优化源和中继预编码器,以最小化均方误差。然后,我们采用对角化方法以及矩阵单调函数的某些属性,将矩阵变量的优化问题转换为标量变量的优化问题。我们采用一种迭代方法,通过Karush–Kuhn–Tucker条件获得中继和源预编码器的解决方案。制定了适当的选择规则,以选择与最佳分支相对应的非线性收发器进行数据传输。仿真结果表明,所提出的MB-THP方案能够减轻信道状态信息错误的影响并提高系统的鲁棒性。

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