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Approximation of Multi-Hop Relay to Dual-Hop Relay and Its Error Performance Analysis

机译:多跳继电器到双跳继电器的逼近及其误差性能分析

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摘要

In this letter, we develop a novel analytical framework in order to derive average symbol error rate (ASER) as a tractable form in multi-hop amplify-and-forward (AF) relay systems with cooperative diversity. In the proposed analytical approach, we modify multi-hop relay systems to dual-hop schemes over Rayleigh fading channels. The received signal in the l th relay can be expressed as a single signal from the source, and the probability density function (pdf) of its signal-to-noise ratio (SNR) can be equivalently modeled as a summation of the pdfs of the SNRs among the source and (l−1) relays. Based on this, the ASERs are then analyzed as approximated bounds, which are verified by comparison with simulation results. The derived ASER expressions show that the diversity order of multi-hop AF relay systems with L relays is (L+1) , which is identical to that of dual-hop systems.
机译:在这封信中,我们开发了一种新颖的分析框架,以便在具有合作分集的多跳放大转发(AF)中继系统中,将平均符号错误率(ASER)导出为可处理的形式。在提出的分析方法中,我们将多跳中继系统修改为瑞利衰落信道上的双跳方案。第l个继电器中的接收信号可以表示为来自信号源的单个信号,其信噪比(SNR)的概率密度函数(pdf)可以等效地建模为信号的pdfs的总和。源和(1-1)中继之间的SNR。基于此,然后将ASER作为近似边界进行分析,并通过与仿真结果进行比较进行验证。推导的ASER表达式表明,具有L个中继的多跳AF中继系统的分集阶数为(L + 1),与双跳系统的分集阶数相同。

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