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A General Robust Linear Transceiver Design for Multi-Hop Amplify-and-Forward MIMO Relaying Systems

机译:用于多跳放大转发MIMO中继系统的通用鲁棒线性收发器设计

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In this paper, linear transceiver design for multi-hop amplify-and-forward (AF) multi-input multi-output (MIMO) relaying systems with Gaussian distributed channel estimation errors is investigated. Commonly used transceiver design criteria including weighted mean-square-error (MSE) minimization, capacity maximization, worst-MSE/MAX-MSE minimization and weighted sum-rate maximization, are considered and unified into a single matrix-variate optimization problem. A general robust design algorithm is proposed to solve the unified problem. Specifically, by exploiting majorization theory and properties of matrix-variate functions, the optimal structure of the robust transceiver is derived when either the covariance matrix of channel estimation errors seen from the transmitter side or the corresponding covariance matrix seen from the receiver side is proportional to an identity matrix. Based on the optimal structure, the original transceiver design problems are reduced to much simpler problems with only scalar variables whose solutions are readily obtained by an iterative water-filling algorithm. A number of existing transceiver design algorithms are found to be special cases of the proposed solution. The differences between our work and the existing related work are also discussed in detail. The performance advantages of the proposed robust designs are demonstrated by simulation results.
机译:本文研究了具有高斯分布信道估计误差的多跳放大转发(AF)多输入多输出(MIMO)中继系统的线性收发器设计。考虑了常用的收发器设计标准,其中包括加权均方误差(MSE)最小化,容量最大化,最差MSE / MAX-MSE最小化和加权总和速率最大化,并将这些标准统一为一个矩阵变量优化问题。提出了一种通用的鲁棒设计算法来解决统一问题。具体而言,通过利用主化理论和矩阵变量函数的性质,当从发射机侧看到的信道估计误差的协方差矩阵或从接收机侧看到的相应协方差矩阵与单位矩阵。基于最佳结构,最初的收发器设计问题被简化为仅具有标量变量的简单问题,而标量变量的解决方案可通过迭代注水算法轻松获得。发现许多现有的收发器设计算法是所提出解决方案的特殊情况。我们还将详细讨论我们的工作与现有相关工作之间的差异。仿真结果证明了所提出的稳健设计的性能优势。

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