Performance Evaluation of Full-Duplex Energy Harvesting Relaying Networks Using PDC Self-Interference Cancellation

Jiaman Li, Le Chung Tran, F. Safaei
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引用次数: 4

Abstract

In this paper, throughput and bit error performance of an in-band full duplex (IBFD) relaying system assisted by the radio frequency energy harvesting technique and the polarization-enabled digital self-interference cancellation (PDC) scheme are investigated. In particular, the relay node harvests power from the wireless radio frequency signal transmitted from the source node and uses this power to amplify and forward signals to the destination. Meanwhile, the PDC scheme is used at the relay node to cancel the self-interference signal in order to facilitate the concurrent in-band transmission and reception. The impact of both energy harvesting and self-interference cancellation on the throughput and the error performance of the system is evaluated. Our simulation results show that the full-duplex energy harvesting relaying system almost doubles the system throughput, compared to the half-duplex energy harvesting relaying system, at the cost of about 5 dB inferior error performance, partially because of the noise effect of the PDC scheme. We also show that to achieve a high throughput along with a good error performance in the full-duplex energy harvesting relaying system, a combined selection of a high signal-to-noise ratio and a suitable energy harvesting time is required.
基于PDC自干扰抵消的全双工能量收集中继网络性能评价
本文研究了射频能量收集技术和极化数字自干扰抵消(PDC)技术辅助下的带内全双工(IBFD)中继系统的吞吐量和误码性能。特别是,中继节点从源节点传输的无线射频信号中获取能量,并使用该能量将信号放大并转发到目的地。同时,在中继节点采用PDC方案消除自干扰信号,方便带内并发收发。评估了能量收集和自干扰消除对系统吞吐量和误差性能的影响。仿真结果表明,与半双工能量收集中继系统相比,全双工能量收集中继系统的吞吐量几乎提高了一倍,但误差性能降低了约5 dB,部分原因是PDC方案的噪声影响。我们还表明,为了在全双工能量收集中继系统中实现高吞吐量和良好的误差性能,需要高信噪比和合适的能量收集时间的组合选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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