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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Outage Analysis of RF Energy Harvesting Cooperative Communication Systems Over Nakagami-m Fading Channels With Integer and Non-Integer m
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Outage Analysis of RF Energy Harvesting Cooperative Communication Systems Over Nakagami-m Fading Channels With Integer and Non-Integer m

机译:具有整数和非整数m的Nakagami-m衰落信道上RF能量收集协作通信系统的中断分析

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摘要

The study of the effects of Nakagami-$m$ fading channels with both integer and non-integer $m$ plays an important role in the design of practical wireless systems. In this paper, we investigate a dual-hop cooperative communication system, where source node communicates with destination node through direct and relaying paths. Partial relay selection (PRS) scheme is used to select the best relay among $N$ relays which are capable of harvesting energy from radio frequency (RF) signals. At the destination, selection combining (SC) technique is employed to combine the signals of the direct path and the relaying path. We consider two relaying protocols, i.e. amplify-and-forward (AF) and decode-and-forward (DF). For both AF and DF protocols, we derive the tight lower-bound closed-form approximate expression and the exact closed-form expression of the outage probability (OP) over Nakagami-$m$ fading channels with both integer and non-integer $m$. Moreover, the optimal energy harvesting duration which minimizes the OP is also determined. Numerical results show that, the OP of DF protocol and its minimum value is lower than those of AF protocol for the same parameter settings. Moreover, the time switching ratio which gives the smallest OP in the case without direct path is larger than the case with direct path.
机译:对具有整数和非整数$ m $的Nakagami- $ m $衰落信道的影响的研究在实际无线系统的设计中起着重要作用。在本文中,我们研究了一种双跳协作通信系统,其中源节点通过直接路径和中继路径与目标节点进行通信。部分中继选择(PRS)方案用于在$ N $中继中选择最佳中继,这些中继能够从射频(RF)信号中获取能量。在目的地,采用选择合并(SC)技术来合并直接路径和中继路径的信号。我们考虑两种中继协议,即放大转发(AF)和解码转发(DF)。对于AF和DF协议,我们推导出具有整数和非整数$ m的Nakagami- $ m $衰落信道上的中断概率(OP)的严格下界封闭形式近似表达式和精确封闭形式表达式$。此外,还确定了使OP最小化的最佳能量收集持续时间。数值结果表明,在相同参数设置下,DF协议的OP及其最小值低于AF协议的OP。此外,在没有直接路径的情况下给出最小OP的时间切换比大于有直接路径的情况。

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