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Dynamic Wireless Energy Harvesting and Optimal Distribution in Multipair DF Relay Network with Nonlinear Energy Conversion Model

机译:具有非线性能量转换模型的多足DF继电器网络中的动态无线能量收集和最优分布

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摘要

Wireless energy harvesting has emerged as an efficient solution to prolong the lifetime of wireless networks composed of energy-constrained nodes. In this paper, we consider a multipoint-to-multipoint relay network, where multiple source nodes communicate with their respective destination nodes via intermediate energy-constrained decode-and-forward (DF) relay. The performance of two different transmission modes, namely, delay tolerant and delay nontolerant, is studied. Based on power-splitting relaying protocol (PSR), optimal energy harvesting and distribution schemes for both transmission modes are provided. In addition, for more realistic and practical analysis, we consider a nonlinear energy conversion model for energy harvesting at the relay node. Our numerical results provide useful insights into different system parameters of a nonlinear energy harvesting-based multipair DF relay network.
机译:无线能量收集作为延长由能量受限节点组成的无线网络寿命的有效解决方案。在本文中,我们考虑多点到多点继电器网络,其中多个源节点通过中间能量受限的解码和前进(DF)中继与其各自的目的地节点通信。研究了两种不同传输模式的性能,即延迟耐受和延迟非受阻器。基于功率分配中继协议(PSR),提供了两种传输模式的最佳能量收集和分配方案。另外,为了更加现实和实际的分析,我们考虑在中继节点处的能量收集的非线性能量转换模型。我们的数值结果提供了对基于非线性能量收集的多级DF中继网络的不同系统参数的有用见解。

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