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On the Feasibility of Full-Duplex Relaying Powered by Wireless Energy Transfer

机译:基于无线能量转移技术支持的全双工中继的可行性

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We consider a wireless two-hop downlink communication system where a grid-connected source node transmits data to a destination node with the assistance of a full-duplex (FD) relay that is powered by wireless energy harvesting. The relay splits its received signal from the first hop into two streams for energy harvesting and information decoding, respectively. Meanwhile, it also forwards the decoded information to the second hop utilizing a portion of the harvested energy. To maximize the data rate, the power splitting factor and energy consumption proportion are jointly optimized in the case of single-antenna transceivers. The analytical results are then used for studying the feasibility of full-duplex relaying and wireless energy transfer. As for the main conclusions, we note that so-called self-energy recycling gives marginal gain for the considered system and relaying at large is useful only when the direct source-to-destination link is very weak. The latter aspect is pronounced in the considered system especially due to the presence of residual full-duplex self-interference and the fact that the relay is powered by an extremely scarce source, i.e., wireless energy transfer.
机译:我们考虑一种无线二跳下行链路通信系统,其中网格连接的源节点在通过无线能量收集供电的全双工(FD)中继的帮助下将数据发送到目标节点。继电器分别将其接收信号从第一跳中分别分别将其接收信号分别分别分别为能量收集和信息解码。同时,它还将解码信息转发到利用一部分收获的能量的第二跳。为了最大化数据速率,在单天线收发器的情况下,可以联合优化电源分裂因子和能量消耗比例。然后使用分析结果来研究全双工中继和无线能量转移的可行性。至于主要结论,我们注意到所谓的自我能量回收为所考虑的系统提供边缘增益,并且只有当直接源到目的地链接非常弱时,大量的转换就是有用的。后一种方面在考虑的系统中发音尤其是由于存在残余全双工自干扰,并且继电器由极稀缺的源供电,即无线能量传输。

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