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Transmission Rate Optimization of Full-Duplex Relay Systems Powered by Wireless Energy Transfer

机译:无线能量传输支持的全双工中继系统传输速率优化

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摘要

We consider a system where a source node communicates with a destination node with the assistance of a wireless energy-powered full-duplex relay node. The relay node splits its received signal into two components for energy harvesting and information decoding, respectively, and forwards the decoded information using a portion of the harvested energy. To maximize the end-to-end transmission rate, the power splitting factor and energy consumption proportion are jointly optimized for the relay with a single transmit antenna in the presence of self-interference. Furthermore, for the relay with multiple transmit antennas, a suboptimal relay beamformer is first designed and the power splitting factor and energy consumption proportion are then jointly optimized. Finally, the asymptotic transmission rate is analyzed with a large number of transmit antennas. Simulation results are provided to demonstrate that the proposed schemes offer significant rate gain compared with some typical reference schemes, irrespective of the residual self-interference level. Especially, by employing a large number of source or relay transmit antennas, the wireless energy-powered relay system is capable of cutting its energy consumption significantly.
机译:我们考虑一个系统,其中源节点在无线能量供电的全双工中继节点的帮助下与目标节点进行通信。中继节点将其接收信号分为两个部分,分别用于能量收集和信息解码,并使用一部分收集的能量转发解码的信息。为了使端到端的传输速率最大化,在存在自干扰的情况下,针对具有单个发射天线的继电器共同优化功率分配因子和能耗比例。此外,对于具有多个发射天线的中继,首先设计了次优中继波束形成器,然后共同优化了功率分配因子和能耗比例。最后,利用大量发射天线来分析渐近传输速率。仿真结果表明,与剩余的典型干扰方案相比,所提出的方案与某些典型的参考方案相比具有明显的速率增益。特别地,通过使用大量的源或中继发射天线,无线能量供电的中继系统能够显着降低其能量消耗。

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