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Performance analysis of energy harvesting multi-antenna relaying system over mixed Nakagami-m/Rician fading channels

机译:混合NAKAGAMI-M / RICIAN衰落通道中电能收割多天线中继系统的性能分析

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摘要

In this paper, we investigate the end-to-end performance of an energy harvesting multi-antenna relaying system. Our analysis allows for a practical fading scenario where the source-relay and the destination-relay links undergo independent Nakagami-m and Rician fading, respectively. Firstly, an exact closed-form expression for outage probability of the considered system is derived. Secondly, based on this derived closed-form expression, we present a new tight upper bound for ergodic throughput. Numerical and simulation results are presented to illustrate the impact of Nakagami-m and Rician-K factors on the end-to-end performance. In addition, the optimal energy harvesting ratio maximizing the ergodic throughput is characterized. Our results also show that the implementation of multiple antennas at the relay can increase the energy harvesting capability, hence, significantly improves the system performance. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本文中,我们研究了能量收集多天线中继系统的端到端性能。我们的分析允许分别进行实际衰落场景,其中源 - 中继和目的地中继链接分别经历独立的Nakagami-M和Rician衰落。首先,推导出考虑系统的中断概率的精确闭合表达式。其次,基于这种衍生的闭合形式表达式,我们为ergodic吞吐量提出了一个新的紧密上限。提出了数值和仿真结果,以说明NAKAGAMI-M和RICIAN-K因子对端到端性能的影响。此外,表征了最大化ergodic产量的最佳能量收集比率。我们的研究结果还表明,在继电器的多个天线的实施可以提高能量收集能力,因此,显着提高了系统性能。 (c)2019 Elsevier B.v.保留所有权利。

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