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Joint Source and Relay Optimization for Two-Way Linear Non-Regenerative MIMO Relay Communications

机译:双向线性非再生MIMO中继通信的源和中继联合优化

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摘要

In this paper, we investigate the challenging problem of joint source and relay optimization for two-way linear non-regenerative multiple-input multiple-output (MIMO) relay communication systems. We derive the optimal structure of the source and relay precoding matrices when linear minimal mean-squared error (MMSE) receivers are used at both destinations in the relay system. We show that for a broad class of frequently used objective functions for MIMO communications such as the MMSE, the maximal mutual information (MMI), and the minimax MSE, the optimal relay and source matrices have a general beamforming structure. This result includes existing works as special cases. Based on this optimal structure, a new iterative algorithm is developed to jointly optimize the relay and source matrices. We also propose a novel suboptimal relay precoding matrix design which significantly reduces the computational complexity of the optimal design with only a marginal performance degradation. Interestingly, we show that this suboptimal relay matrix is indeed optimal for some special cases. The performance of the proposed algorithms are demonstrated by numerical simulations. It is shown that the novel minimax MSE-based two-way relay system has a better bit-error-rate (BER) performance compared with existing two-way relay systems using the MMSE and the MMI criteria.
机译:在本文中,我们研究了双向线性非再生多输入多输出(MIMO)中继通信系统中联合源和中继优化的挑战性问题。当在中继系统的两个目的地都使用线性最小均方误差(MMSE)接收器时,我们得出源和中继预编码矩阵的最佳结构。我们表明,对于MMSE,最大互信息(MMI)和minimax MSE等MIMO通信常用的广泛目标函数而言,最佳中继和源矩阵具有一般的波束成形结构。该结果包括作为特殊情况的现有作品。基于这种最佳结构,开发了一种新的迭代算法来共同优化中继矩阵和源矩阵。我们还提出了一种新颖的次优中继预编码矩阵设计,该设计可显着降低最优设计的计算复杂度,而只会降低边际性能。有趣的是,我们表明,对于某些特殊情况,该次优中继矩阵确实是最佳的。通过数值仿真证明了所提出算法的性能。结果表明,与基于MMSE和MMI标准的现有双向中继系统相比,基于minimax MSE的新型双向中继系统具有更好的误码率(BER)性能。

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