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Optimum SWIPT relaying in bidirectional non-regenerative relay networks

机译:双向非再生中继网络中的最佳SWIPT中继

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摘要

The authors study the optimal design of simultaneous wireless information and power transfer relaying in bidirectional non-regenerative relay networks. They consider both power splitting relaying and time switching relaying. Since there are two opposite traffic flows between two sources, they characterise the transmission rate performance by the minimum rate of two opposite traffic flows. Specifically, they first obtain closed-form expressions for the optimum power splitting and time switching coefficients to maximise the minimum transmission rate of bidirectional non-regenerative relaying. They also derive the resulting maximum transmission rate expressions. Furthermore, they consider a minimum input radio frequency (RF) power level to turn on diodes, and derive the turn-on probability of the RF energy harvesting circuit when two channels experience independent Rayleigh fading. Numerical results confirm that the authors' analyses exactly match with simulation results and that the two relaying strategies with optimum coefficients give almost the same transmission rate performance.
机译:作者研究了双向非再生中继网络中同时进行无线信息和功率传输中继的最佳设计。他们同时考虑了功率分配中继和时间切换中继。由于在两个源之间有两个相反的业务流,它们通过两个相反的业务流的最小速率来表征传输速率性能。具体而言,他们首先获得最佳功率分配和时间切换系数的闭合形式表达式,以使双向非再生中继的最小传输速率最大化。它们还可以得出最终的最大传输速率表达式。此外,他们考虑了打开二极管的最小输入射频(RF)功率水平,并推导了当两个通道经历独立的瑞利衰落时RF能量采集电路的开启概率。数值结果证实了作者的分析与仿真结果完全吻合,并且具有最佳系数的两种中继策略给出了几乎相同的传输速率性能。

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