Time Switching Protocol for Multi-Antenna SWIPT Systems

Seowoo Kang, Hoon Lee, S. Hwang, Inkyu Lee
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引用次数: 3

Abstract

In this paper, we investigate simultaneous wireless information and power transfer (SWIPT) where a multi-antenna transmitter conveys information and energy simultaneously to a multi-antenna receiver equipped with time switching (TS) circuits for an energy harvesting (EH) mode and an information decoding (ID) mode. In contrast with conventional uniform TS (UTS) structure where all the receive antennas at the receiver apply a single TS circuit, to improve the SWIPT performance, we suggest a general dynamic TS (DTS) receiver architecture which consists of an individual TS circuit for each antenna. We aim to analyze the achievable rate-energy (R-E) tradeoff of the DTS system by jointly optimizing the covariance matrices at the transmitter and the time durations for the EH and the ID modes of the receive antennas. To determine the boundary points of the R-E region, we suggest the globally optimal algorithm for the rate maximization problem via convex optimization techniques. Numerical examples verify the efficacy of the proposed DTS over conventional UTS methods.
多天线SWIPT系统的时间交换协议
在本文中,我们研究了同步无线信息和能量传输(SWIPT),其中多天线发射器将信息和能量同时传输到配备时间交换(TS)电路的多天线接收器,用于能量收集(EH)模式和信息解码(ID)模式。与传统的均匀TS (UTS)结构(接收器上的所有接收天线都应用单个TS电路)相比,为了提高SWIPT性能,我们建议采用通用动态TS (DTS)接收器架构,该架构由每个天线的单个TS电路组成。我们的目标是通过联合优化发射机的协方差矩阵以及接收天线的EH和ID模式的持续时间来分析DTS系统可实现的速率-能量(R-E)权衡。为了确定R-E区域的边界点,我们提出了利用凸优化技术求解速率最大化问题的全局最优算法。数值算例验证了所提DTS方法优于传统UTS方法的有效性。
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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