The Capacity of SWIPT Systems over Rayleigh-Fading Channels with HPA

Nizar Khalfet, I. Krikidis
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引用次数: 4

Abstract

In this paper, we study the fundamental limits of simultaneous information and power transfer over a Rayleigh fading channel in the presence of high-power amplifier (HPA) nonlinearity. In particular, a three-party communication system is considered, where a transmitter aims simultaneously conveying information to an information receiver and delivering energy to an energy harvester receiver. We study the information-energy capacity region and the associated input distribution under: i) average-power, peak-power (PP) constraints at the transmitter, b) HPA nonlinearity at the transmitter, and c) nonlinearity of the energy harvesting circuit at the energy receiver. By extending Smith’s mathematical framework [1], we show that the optimal input distribution under those constraints is discrete with a finite number of mass points. Moreover, we derive a closed-form expression of the capacity-achieving distribution for the low PP regime, where there is no trade-off between information and energy transfer. Finally, we show that HPA significantly reduces the information energy capacity region.
基于HPA的瑞利衰落信道SWIPT系统容量研究
在本文中,我们研究了在高功率放大器(HPA)非线性存在的瑞利衰落信道上同时进行信息和功率传输的基本限制。具体地,考虑一种三方通信系统,其中发射器旨在同时向信息接收器传送信息并向能量收集器接收器传送能量。研究了在发射端平均功率、峰值功率(PP)约束、发射端HPA非线性和能量接收端能量收集电路非线性条件下的信息-能量容量区域和相关输入分布。通过扩展Smith的数学框架[1],我们证明了这些约束下的最优输入分布是离散的,具有有限数量的质量点。此外,我们导出了低PP状态下的能力实现分布的封闭表达式,其中不存在信息和能量转移之间的权衡。最后,我们发现HPA显著降低了信息能量容量区域。
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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