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On outage minimization in RF energy harvesting relay assisted bidirectional communication

机译:射频能量收集中继辅助双向通信中的中断最小化

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摘要

This paper explores an end-to-end outage probability experienced in a bidirectional relay assisted communication where the relay is assumed to be equipped with an RF energy harvesting circuit. First, the closed-form expression for the outage of the system is derived. This is followed by the formulation of an unconstrained optimization problem to achieve minimum outage probability with respect to the relay placement and consequent time allocation for energy harvesting. The system model is further extended in an underlay cognitive radio framework to study the impact of a primary user outage constraint on the end-to-end outage performance of the two-way communications. The accuracy of analytical results is validated through simulation results. The impact of various system parameters like relay position, time allocation factor, target rate of transmission on the outage probability is also observed. In addition, it is also shown that spectral efficiency of the communication system using hybrid power-time switching relaying protocol is much superior to similar one-way and two-way relay assisted communication system with power splitting relaying protocol.
机译:本文探讨了双向中继辅助通信中遇到的端到端中断概率,在这种情况下,假设中继配备了RF能量收集电路。首先,导出系统中断的闭式表达式。接下来是制定无约束的优化问题,以实现相对于继电器放置以及由此产生的能量收集时间分配而言的最小中断概率。该系统模型在底层认知无线电框架中得到了进一步扩展,以研究主要用户中断约束对双向通信的端到端中断性能的影响。分析结果的准确性通过仿真结果得到验证。还观察到各种系统参数(如继电器位置,时间分配因子,目标传输速率)对中断概率的影响。另外,还表明,使用混合功率时间切换中继协议的通信系统的频谱效率远优于具有功率分配中继协议的类似的单向和双向中继辅助通信系统。

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