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Accumulate then forward: An opportunistic relaying protocol for wireless-powered cooperative communications

机译:先积累再转发:无线协作通信的机会中继协议

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This paper investigates a wireless-powered cooperative communication network consisting of a source, a destination and a multi-antenna decode-and-forward relay. We consider the relay as a wireless-powered node that has no external power supply; but it is equipped with an energy harvesting (EH) unit and a rechargeable battery such that it can harvest and accumulate energy from radio-frequency signals broadcast by the source. By fully incorporating the EH feature of the relay, we develop an opportunistic relaying protocol, termed accumulate-then-forward (ATF), for the considered WPCCN. We then adopt the discrete Markov chain to model the dynamic charging and discharging behaviors of the relay battery. Based on this, we derive a closed-form expression for the exact outage probability of the proposed ATF protocol. Numerical results show that the ATF scheme can outperform the direct transmission one, especially when the amount of energy consumed by relay for information forwarding is optimized.
机译:本文研究了一种无线协作通信网络,该网络由一个源,一个目标和一个多天线解码转发中继组成。我们将继电器视为没有外部电源的无线供电节点。但是它配备了能量收集(EH)单元和可充电电池,因此它可以从源广播的射频信号中收集和积累能量。通过完全合并中继的EH功能,我们为所考虑的WPCCN开发了机会中继协议,称为累积-然后-转发(ATF)。然后,我们采用离散马尔可夫链对继电器电池的动态充电和放电行为进行建模。基于此,我们为提出的ATF协议的确切中断概率导出了一个封闭形式的表达式。数值结果表明,ATF方案的性能优于直接传输方案,尤其是当中继器转发信息所消耗的能量得到优化时。

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