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首页> 外文期刊>IEEE Transactions on Green Communications and Networking >Wireless Energy Harvesting-Based Relaying: A Finite-SNR Diversity-Multiplexing Tradeoff Perspective
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Wireless Energy Harvesting-Based Relaying: A Finite-SNR Diversity-Multiplexing Tradeoff Perspective

机译:基于无线能量收集的继电器:有限SNR分集多路复用权衡透视

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摘要

This paper presents an analytical framework to derive the closed-form expressions for diversity-multiplexing tradeoff (DMT) for wireless energy harvesting (WEH) based amplify-and-forward (AF) and decode-and-forward (DF) protocols in finite signal-to-noise (SNR) regime. The results of this investigation suggest that both AF and DF offer similar performance except for few nuances. At low multiplexing gains, DF offers marginally better performance in the low SNR regime, whereas AF performs better in the high SNR scenarios. However, in the higher multiplexing gain regime, though subtle, DF uniformly dominates AF across all SNRs. Furthermore, an analytical study is presented to evaluate the effect of the fraction of time devoted to WEH (time-sharing parameter, ε) on the finite SNR DMT (f-DMT). In addition, the impact of relay position on the outage performance is also presented. A distinguishing feature of the proposed work is the characterization of WEH-based fDMT which reveals the complete interplay between the operating SNR and the time-sharing parameter (ε), which is of fundamental importance to system designers. Finally, Monte-Carlo simulations are provided to confirm the veracity of analytical solutions.
机译:本文提出了一个分析框架,用于导出用于多样性多路复用权衡(DMT)的闭合表达式,用于基于无线能量收集(WEH)的放大和前进(AF)和有限信号的解码和前进(DF)协议-to噪声(SNR)制度。本研究结果表明,除了几个细微差别,AF和DF都提供了类似的性能。在低多路复用增益中,DF在低SNR制度中提供了较好的性能,而AF在高SNR场景中表现更好。然而,在较高的复用增益制度中,尽管微妙地,DF均匀地占所有SNR的AF。此外,提出了一种分析研究以评估在有限SNR DMT(F-DMT)上致力于WeH(时间共享参数,ε)的时间的效果。此外,还介绍了中继位置对中断性能的影响。所提出的工作的显着特征是基于Weh的FDMT的表征,其揭示了操作SNR和时间共享参数(ε)之间的完整相互作用,这对系统设计人员来说是根本的重要性。最后,提供了Monte-Carlo模拟以确认分析解决方案的真实性。

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