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Cooperative Relaying with Energy Harvesting: Performance Analysis Using Extreme Value Theory

机译:具有能量收集的协作中继:使用极值理论的性能分析

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This paper studies the end-to-end performance of dual-hop amplify-and-forward (AF) relaying systems, where the relays have no constant power supplies but can harvest energy from both the desired signal and nearby co-channel interferences (CCIs). A hybrid energy harvesting (EH) protocol, which is a combination of the existing time switching (TS) and power splitting (PS) protocols, is adopted at the relays. To enhance system performance, an opportunistic relay selection is exploited and the extreme value theory is applied to analyze the asymptotic throughput of the system. Our analysis reveals that when the number of relays (N) is sufficiently large, the system through- put scales with ln ln N . Moreover, the hybrid EH protocol is demonstrated to outperform both TS and PS protocols while it is equivalent to PS protocol in the high signal-to-noise-ratio (SNR) region.
机译:本文研究了双跳放大转发(AF)中继系统的端到端性能,该中继没有恒定的电源,但可以从所需信号和附近的同频干扰(CCI)中收集能量)。中继采用了混合能量收集(EH)协议,该协议是现有时间切换(TS)和功率分配(PS)协议的组合。为了提高系统性能,利用机会继电器选择,并应用极值理论分析系统的渐近吞吐量。我们的分析表明,当继电器的数量(N)足够大时,系统的吞吐量规模为ln lnN。此外,混合式EH协议在高信噪比(SNR)区域中等效于PS协议,但其性能优于TS和PS协议。

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