BER analysis and optimization for differential cooperative networks with relay selection

Kun Zhao, Bangning Zhang, Kegang Pan, Aijun Liu, D. Guo
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Abstract

In this paper, we investigate a cooperative communication system which consists of a source, a destination and NR relays. The differential modulation and relay selection (DM-RS) are combined in the system, where the best relay is selected to assist the source node with detect-and-forward (DetF) protocol. We consider general fading scenarios where the channel variances of different links are not equal, the average bit error rate (ABER) performance and power allocation strategy are investigated. Firstly, a theoretical ABER expression of the scheme with differential M-ary phase shift keying (DMPSK) modulation is derived. Then, to gain more insightful understanding, we look into the high signal-to-noise ratio (SNR) regime and provide a simple and informative asymptotic ABER expression, which reveals that the scheme can achieve a full diversity order. Furthermore, based on the simple asymptotic ABER expression, the optimum power allocation strategy is determined to improve the system ABER performance. Simulation and numerical results show that the optimum power allocation strategy yields significant performance improvement over the equal power allocation strategy.
带中继选择的差分协同网络误码率分析与优化
本文研究了一种由源、目的和NR中继组成的协同通信系统。系统将差分调制和中继选择(DM-RS)相结合,选择最佳中继,通过探测转发(DetF)协议辅助源节点。考虑不同链路信道方差不相等的一般衰落情况,研究了平均误码率(ABER)性能和功率分配策略。首先,推导了差分M-ary相移键控(DMPSK)调制方案的理论ABER表达式。然后,为了获得更深刻的理解,我们研究了高信噪比(SNR)区域,并提供了一个简单且信息丰富的渐近ABER表达式,表明该方案可以实现全分集阶。基于简单的渐近ABER表达式,确定了优化的功率分配策略,提高了系统的ABER性能。仿真和数值结果表明,最优功率分配策略比等功率分配策略具有显著的性能提高。
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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