瑞利衰落信道中继站和目的站CCI开关检测DF中继系统的性能

A. Salhab, S. Zummo
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引用次数: 6

摘要

在本文中,我们评估了具有低复杂度中继选择方案的译码转发(DF)中继系统在中继和目的地存在干扰的情况下的中断性能。该方案主要基于开关-检查分集组合(SEC)和SEC与检查后选择(SECps)技术,其中选择第二跳信噪比(SNR)满足预定交换阈值的中继代替最佳中继将源消息转发到目的地。在本文中,我们首先推导了中继选择方案信噪比的概率密度函数(PDF)和端到端(e2e)信噪比(SINR)的条件累积分布函数(CDF)。然后利用导出的统计量以及中继和直接链路的第一跳信道的统计量推导出端到端中断概率的封闭表达式。我们假设在目的地采用最大比率合并(MRC),将中继和直连的信号合并。此外,为了更深入地了解系统,研究了高信噪比下的停机性能。通过蒙特卡罗仿真验证了推导出的解析表达式和渐近表达式。主要结果表明,当干扰功率不随信噪比成比例时,系统仍然可以获得分集增益,特别是在信噪比与开关阈值相当的情况下。渐近结果表明,在高信噪比下,SEC和SECps中继方案的系统分集阶数为2,编码增益基本相同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of switch-and-examine DF relay systems with CCI at the relays and destination over Rayleigh fading channels
In this paper, we evaluate the outage performance of a decode-and-forward (DF) relay system with a low-complexity relay selection schemes in the presence of interference at the relays and destination. The schemes are mainly based on the switch-and-examine diversity combining (SEC) and SEC with post-examine selection (SECps) techniques in which a relay whose second hop signal-to-noise ratio (SNR) satisfies a predetermined switching threshold is selected instead of the best relay to forward the source message to destination. In this paper, we first derive the probability density function (PDF) of the SNR of the relay selection scheme and the conditional cumulative distribution function (CDF) of the end-to-end (e2e) signal-to-interference plus noise ratio (SINR) assuming Rayleigh fading channels. The derived statistics along with the statistics of first hop channels of the relays and the direct link are then used to derive a closed-form expression for the e2e outage probability. We assume that maximal-ratio combining (MRC) is used at the destination to combine the signals of relay and the direct link. Furthermore, to get more about system insights, the outage performance is studied at high SNR regime. Monte-Carlo simulations are provided to validate the derived analytical and asymptotic expressions. Main results illustrate that when the interference power does not scale with SNR, the system can still achieve diversity gain, especially, at SNR values that are comparable to the switching threshold. Asymptotic results show that at high SNR values, the system with the SEC and SECps relaying schemes has a diversity order of 2 and approximately the same coding gain.
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