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Performance Analysis of Optimal Beamforming in Fixed-Gain AF MIMO Relaying over Asymmetric Fading Channels

机译:非对称衰落信道上固定增益AF MIMO中继中最佳波束成形的性能分析

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This paper analyzes the performance of an optimal single stream beamforming scheme for a multiple-input multiple-output (MIMO) relay network with dual-hop fixed-gain amplify-and-forward (AF) relaying. The source-relay and relay-destination channels undergo Rayleigh and Rician fading respectively. Different Rician fading scenarios are considered for relay-destination channel, depending on the rank of the Rician channel matrix. The channel state information is only available at the destination, and the destination computes the optimal transmit and receive beamforming vectors to maximize the instantaneous signal-to-noise ratio (SNR). The optimal transmit beamforming vector is sent back to the transmitter via a dedicated feedback link. We derive new analytical expressions for the cumulative distribution function, probability density function, and moments to statistically characterize the properties of the instantaneous SNR. These statistical properties are used to analyze the system performance in terms of the outage probability, average bit error rate, and the ergodic capacity. The performance analysis investigates the effects of the Rician factor, rank of the line-of-sight component, and number of antennas at the nodes on the system performance. The results reveal that the optimal single stream beamforming system provides better performance than an orthogonal space-time block coded based AF MIMO system.
机译:本文分析了具有双跳固定增益放大转发(AF)中继的多输入多输出(MIMO)中继网络的最佳单流波束成形方案的性能。源中继信道和中继目的地信道分别经历瑞利衰落和Rician衰落。根据中继信道矩阵的等级,将不同的Rician衰落场景考虑用于中继目标信道。信道状态信息仅在目标位置可用,并且目标位置计算最佳的发射和接收波束成形向量,以使瞬时信噪比(SNR)最大化。最佳发射波束成形矢量通过专用反馈链路发送回发射器。我们导出了累积分布函数,概率密度函数和矩的新分析表达式,以统计地表征瞬时SNR的特性。这些统计属性用于根据中断概率,平均误码率和遍历容量分析系统性能。性能分析调查了Rician因子,视线组件的等级以及节点处天线数量对系统性能的影响。结果表明,与基于正交空时分组编码的AF MIMO系统相比,最优的单流波束成形系统提供了更好的性能。

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