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Time-Switching Uplink Network-Coded Cooperative Communication With Downlink Energy Transfer

机译:带有下行链路能量传输的时间切换上行链路网络编码协作通信

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摘要

In this work, we consider a multiuser cooperative wireless network where the energy-constrained sources have independent information to transmit to a common destination, which is assumed to be externally powered and responsible for transferring energy wirelessly to the sources. The source nodes may cooperate, under either decode-and-forward or network coding-based protocols. Taking into account the fact that the energy harvested by the source nodes is a function of the fading realization of inter-user channels and user-destination channels, we obtain a closed-form approximation for the system outage probability, as well as an approximation for the optimal energy transfer period that minimizes such outage probability. It is also shown that, even though the achievable diversity order is reduced due to wireless energy transfer process, it is very close to the one achieved for a network without energy constraints. Numerical results are also presented to validate the theoretical results.
机译:在这项工作中,我们考虑了一个多用户协作无线网络,其中能量受限的源具有独立的信息以传输到一个公共目标,该目标假定为外部供电并负责将能量无线传输到这些源。源节点可以根据解码转发协议或基于网络编码的协议进行协作。考虑到源节点收集的能量是用户间通道和用户目标通道逐渐消失的函数,因此我们获得了系统中断概率的近似形式以及对系统中断概率的近似形式。最佳的能量传输周期,可以最大程度地减少此类中断的可能性。还表明,即使由于无线能量传输过程而降低了可达到的分集阶数,也非常接近于没有能量约束的网络所实现的分集阶数。数值结果也验证了理论结果。

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