MRC-Based Relay Precoding for Cooperative AF Multi-Antenna Relay Networks with CSI

Tuyen X. Tran, N. Tran, T. Duong, M. Elkashlan, H. Bahrami
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Abstract

This paper investigates linear precoding designs for a cooperative amplify-and-forward (AF) network with a multi-antenna relay having complete channel state information (CSI). The focus is on both orthogonal AF (OAF) and non-orthogonal AF (NAF) protocols. The precoders at the relay are derived based on the maximum ratio combining (MRC) scheme, followed by an optimal power amplification factor to maximize the end-to-end achievable rate. For OAF, it is a concave optimization problem and the closed-form solution can be obtained using Karush-Kuhn-Tucker (KKT) conditions. However, the optimization problem for NAF is non-convex and getting globally optimal solution in closed-form is more challenging. Our approach is to investigate the achievable rate in different sub-domains of the channel matrix to upper-bound the original problem by a convex optimization problem. It is then shown that the optimal solution to the power amplification factor of the original optimization problem can be obtained in closed-form. The optimal MRC-based relay precoding vector is then established. Numerical results reveal that the proposed system achieves significant end-to-end rate gains over the conventional dual-hop AF multi-antenna as well as cooperative AF single-antenna systems.
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基于mrc的协同AF多天线中继网络中继预编码
研究了具有完整信道状态信息(CSI)的多天线中继协同放大转发(AF)网络的线性预编码设计。重点是正交AF (OAF)和非正交AF (NAF)协议。继电器上的预编码器基于最大比率组合(MRC)方案推导,其次是最优功率放大因子,以最大化端到端可实现的速率。对于OAF,它是一个凹优化问题,可以使用Karush-Kuhn-Tucker (KKT)条件得到闭型解。然而,NAF的优化问题是非凸的,在封闭形式下获得全局最优解更具挑战性。我们的方法是通过一个凸优化问题来研究信道矩阵在不同子域上对原问题上界的可达率。结果表明,原优化问题的功率放大系数的最优解可以以封闭形式得到。建立了最优的基于mrc的中继预编码向量。数值结果表明,与传统的双跳AF多天线和协同AF单天线系统相比,该系统获得了显著的端到端速率增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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