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Full-Duplex Wireless-Powered Relay in Two Way Cooperative Networks

机译:双向协作网络中的全双工无线供电中继

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摘要

This paper investigates a full duplex wirelesspowered two way communication networks, where two hybrid access points (HAP) and a number of amplify and forward (AF) relays both operate in full duplex scenario. We use time switching (TS) and static power splitting (SPS) schemes with two way full duplex wireless-powered networks as a benchmark. Then the new time division duplexing static power splitting (TDD SPS) and full duplex static power splitting (FDSPS) schemes as well as a simple relay selection strategy are proposed to improve the system performance. For TS, SPS and FDSPS, the best relay harvests energy using the received RF signal from HAPs and uses harvested energy to transmit signal to each HAP at the same frequency and time, therefore only partial self-interference (SI) cancellation needs to be considered in the FDSPS case. For the proposed TDD SPS, the best relay harvests the energy from the HAP and its self-interference. Then we derive closed-form expressions for the throughput and outage probability for delay limited transmissions over Rayleigh fading channels. Simulation results are presented to evaluate the effectiveness of the proposed scheme with different system key parameters, such as time allocation, power splitting ratio and residual SI.
机译:本文研究了一种全双工无线供电的双向通信网络,其中两个混合接入点(HAP)和多个放大转发(AF)中继都在全双工情况下运行。我们使用时间切换(TS)和静态功率分配(SPS)方案,并以双向全双工无线网络为基准。然后提出了新的时分双工静态功率分配(TDD SPS)和全双工静态功率分配(FDSPS)方案以及一种简单的中继选择策略,以提高系统性能。对于TS,SPS和FDSPS,最好的中继使用从HAP接收到的RF信号来收集能量,并使用收集的能量以相同的频率和时间将信号传输到每个HAP,因此仅需考虑部分自干扰(SI)消除在FDSPS情况下。对于建议的TDD SPS,最好的中继从HAP及其自干扰中获取能量。然后,我们导出了通过瑞利衰落信道进行时延受限传输的吞吐量和中断概率的闭式表达式。仿真结果表明了该方案在不同系统关键参数(如时间分配,功率分配比和残差SI)下的有效性。

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