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首页> 外文期刊>IEEE transactions on wireless communications >Low-Complexity End-to-End Performance Optimization in MIMO Full-Duplex Relay Systems
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Low-Complexity End-to-End Performance Optimization in MIMO Full-Duplex Relay Systems

机译:MIMO全双工中继系统中的低复杂度端到端性能优化

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摘要

In this paper, we deal with the deployment of full-duplex relaying in amplify-and-forward (AF) cooperative networks with multiple-antenna terminals. In contrast to previous studies, which focus on the spatial mitigation of the loopback interference (LI) at the relay node, a joint precoding/decoding design that maximizes the end-to-end (e2e) performance is investigated. The proposed precoding incorporates rank-1 zero-forcing (ZF) LI suppression at the relay node and is derived in closed-form by solving appropriate optimization problems. In order to further reduce system complexity, the antenna selection (AS) problem for full-duplex AF cooperative systems is discussed. We investigate different AS schemes to select a single transmit antenna at both the source and the relay, as well as a single receive antenna at both the relay and the destination. To facilitate comparison, exact outage probability expressions and asymptotic approximations of the proposed AS schemes are provided. In order to overcome zero-diversity effects associated with the AS operation, a simple power allocation scheme at the relay node is also investigated and its optimal value is analytically derived. Numerical and simulation results show that the joint ZF-based precoding significantly improves e2e performance, while AS schemes are efficient solutions for scenarios with strict computational constraints.
机译:在本文中,我们处理具有多天线终端的放大转发(AF)协作网络中的全双工中继的部署。与以前的研究侧重于中继节点处的环回干扰(LI)的空间缓解相反,本文研究了一种最大化端到端(e2e)性能的联合预编码/解码设计。所提出的预编码在中继节点处并入了rank-1迫零(ZF)LI抑制,并通过解决适当的优化问题以闭合形式导出。为了进一步降低系统复杂度,讨论了全双工AF协作系统的天线选择(AS)问题。我们研究了不同的AS方案,以在源和中继两者上选择单个发射天线,并在中继和目标两者上选择单个接收天线。为了便于比较,提供了所提出的AS方案的确切中断概率表达式和渐近近似。为了克服与AS操作相关的零分集效应,还研究了中继节点处的简单功率分配方案,并分析得出了其最佳值。数值和仿真结果表明,基于ZF的联合预编码显着提高了端到端性能,而AS方案是具有严格计算约束的方案的有效解决方案。

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