认知双路径连续中继网络的同时无线信息和功率传输

Zihe Zhang, Lixin Li, Ganning He, Wei Chen, Zhu Han
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引用次数: 1

摘要

无线供电中继(WPR)是无线信息与电力同步传输(SWIPT)的一种新兴应用场景,已引起人们的广泛关注。本文提出了一种具有功率分割(PS)能力的认知双径中继(TPR)网络——swipt。与半双工(HD)中继辅助的PS- swipt网络相比,在PS的帮助下,连续源和中继传输可以克服频谱效率损失。提出了一个优化问题,联合优化两个继电器的PS因子,使两个连续时隙的目的地信噪比(SINR)最小。通过推理和证明,用迭代法得到最优解。考虑到中继间干扰(IRI)的消除,我们还研究了在足够小的IRI信道增益条件下的最优PS因子。仿真结果表明,在所提出的方案中,当IRI信道增益低于某一阈值时,采用IRI消去的最优PS因子与采用IRI消去的最优PS因子基本相同,该阈值可作为迭代的初始值,以减少实际网络中的迭代次数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simultaneous wireless information and power transfer for cognitive two-path successive relaying networks
Wireless powered relay (WPR) is an emerging application scenario for simultaneous wireless information and power transfer (SWIPT), which has drawn significant attentions. In this paper, we propose a cognitive two-path relay (TPR) network with the capability of power splitting (PS)-SWIPT. With the aid of PS, the successive source and relay transmissions can overcome spectral efficiency loss compared with half-duplex (HD) relay-assisted PS-SWIPT networks. An optimization problem is formulated, with jointly optimizing the PS factors of two relays to maximize the minimum signal-to-interference-plus-noise ratio (SINR) at the destination during two successive time slots. Through ratiocination and proving, the optimal solutions can be obtained by iterative methods. In consideration of inter-relay interference (IRI) cancellation, we also investigate the optimal PS factors under the condition of sufficiently small IRI channel gains. The simulation results demonstrate that, in the proposed scheme, the optimal PS factors with IRI cancellation are almost identical with the solutions with IRI when the IRI channel gains lower than a certain threshold, which can be set as the initial values of the iteration to reduce the iteration times in practical networks.
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