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Decode-and-forward relaying with full-duplex wireless information and power transfer

机译:具有全双工无线信息和功率传输的解码转发中继

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摘要

In this study, the authors consider a decode-and-forward (DF) relaying protocol with full-duplex wireless information and power transfer, and investigate its outage performance. In this protocol, a cooperative relay can transmit the information to the destination and harvest the energy from the source simultaneously. Thus, part of the energy used by the relay can be recycled through the self-loop channel that exists in the relay's full-duplex operation. An approximated expression for the outage probability is derived under the scenario where the self-loop channel is fading, and then the authors derive an exact closed-form expression for the outage probability under a scenario where the self-loop channel is non-fading. Moreover, to optimise the outage performance, a power allocation scheme is also provided. The authors analyse the effect of self-loop channel on the outage performance, and show that, benefiting from the full-duplex operation and self-energy recycling, the considered protocol is superior to the existing power splitting-based and time switching-based DF relaying protocols, in terms of outage performance. Simulations are provided to validate the authors' results.
机译:在这项研究中,作者考虑了具有全双工无线信息和功率传输的解码转发(DF)中继协议,并研究了其中断性能。在此协议中,协作中继可以将信息传输到目的地,并同时从源中收集能量。因此,继电器使用的部分能量可以通过存在于继电器全双工操作中的自环通道进行回收。在自环信道衰落的情况下,得出了断电概率的近似表达式,然后作者在自环信道不衰落的情况下,得出了断电概率的精确闭式表达式。而且,为了优化中断性能,还提供了功率分配方案。作者分析了自环信道对中断性能的影响,并表明,受益于全双工操作和自能量回收,所考虑的协议优于现有的基于功率分配和基于时间切换的DF。就中断性能而言,中继协议。提供模拟以验证作者的结果。

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