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Nonlinear Precoding Design for MIMO Amplify-and-Forward Two-Way Relay Systems

机译:MIMO放大转发双向中继系统的非线性预编码设计

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摘要

In traditional multiple-input–multiple-output (MIMO) channel and MIMO one-way relay system, nonlinear precoding design has shown significant performance gain over linear design. In this paper, we aim to study nonlinear precoding design for MIMO amplify-and-forward (AF) two-way relay systems, where nonlinear minimal mean square error (MMSE) decision feedback equalizers (DFEs) are used in two destinations, and linear transmit precoding is applied at the source and relay nodes. We first investigate nonlinear precoding design, where the precoding is only conducted at two sources for a fixed-relay precoder. After some transformations, we prove that this design problem is convex, and an efficient algorithm is provided to find the optimal solution. Then, we consider the nonlinear joint precoding design to further incorporate relay precoding. Due to the nonconvexity of this problem, we first propose an iterative algorithm (Algorithm I) to approach the optimal solution. It is proven that Algorithm I is convergent and can converge to a stationary point of the joint design problem. Moreover, we present a simplified iterative algorithm (Algorithm II) for joint precoding design to reduce the design complexity. It is found that Algorithm II almost achieves the same performance as Algorithm I in most cases. Our simulation results show that the proposed nonlinear joint precoding design significantly outperforms the linear joint precoding design. It is also shown that the choice between the proposed nonlinear source precoding design and the linear relay precoding design is dependent on specific conditions.
机译:在传统的多输入多输出(MIMO)通道和MIMO单向中继系统中,非线性预编码设计比线性设计具有明显的性能提升。本文旨在研究MIMO放大转发(AF)双向中继系统的非线性预编码设计,其中两个目标均使用非线性最小均方误差(MMSE)决策反馈均衡器(DFE),而线性传输预编码应用于源节点和中继节点。我们首先研究非线性预编码设计,其中对于固定继电器的预编码器,预编码仅在两个来源进行。经过一些转换,我们证明了该设计问题是凸的,并提供了一种有效的算法来找到最优解。然后,我们考虑将非线性联合预编码设计进一步纳入中继预编码。由于该问题的非凸性,我们首先提出一种迭代算法(算法I)来逼近最优解。事实证明,算法I是收敛的,可以收敛到联合设计问题的固定点。此外,我们为联合预编码设计提出了一种简化的迭代算法(算法II),以降低设计复杂度。可以发现,在大多数情况下,算法II的性能几乎与算法I相同。仿真结果表明,提出的非线性联合预编码设计明显优于线性联合预编码设计。还表明,所提出的非线性源预编码设计和线性中继预编码设计之间的选择取决于特定条件。

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