同时无线信息和能量传输的移幅键控星座空间

A. Hanif, M. Doroslovački
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引用次数: 1

摘要

同时无线信息和电力传输(SWIPT)有潜力通过在交换信息的同时无线激活它们,实现物联网(IoT)的设想无处不在。最近,低复杂度的SWIPT接收机架构被考虑用于从整流后的调幅信号中解码信息。然而,对这些结构中普遍存在的非线性整流模型的改进关注较少,这些模型往往被截断到二极管特性的四阶项。本文提出了一种新的、易于处理的整流天线非线性分析模型,该模型提供了在整个二极管非线性区域对应的移幅键控(ASK)星座空间上收获的直流功率的理论上限。此外,该工作还暴露了收集的直流功率相对-à-vis输入信号功率的凸性,从而验证了SWIPT中传输符号振幅分布的不同选择的速率能量(R-E)权衡。最后,利用所采用的模型提出的理论结果通过蒙特卡罗电路仿真得到证实,从而方便地评估和得出针对ASK星座空间外调制方案选择的SWIPT性能折衷。
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Amplitude Shift Keying Constellation Space for Simultaneous Wireless Information and Power Transfer
Simultaneous wireless information and power transfer (SWIPT) has the potential to realize the envisioned ubiquity of the internet of things (IoT) by energizing them wirelessly whilst exchanging information. Recently, low-complexity receiver architectures for SWIPT are being considered for decoding information from amplitude modulated signals after rectification. However, less attention is paid towards improving the non-linear rectifier model prevalent in these architectures which is often truncated till fourth-order term in diode characteristic. In this paper, a novel, tractable analytical model for the rectenna non-linearity is presented which provides a theoretical upper bound to harvested DC power over the amplitude shift keying (ASK) constellation space corresponding to the entire diode non-linear region. Besides, the work also exposes the convexity of harvested DC power vis-à-vis incoming signal power thereby verifying the rate-energy (R-E) tradeoff in SWIPT for different choices of transmitted symbol amplitude distributions. Finally, the theoretical results presented using the adopted model are substantiated with the Monte Carlo circuit simulations allowing to conveniently evaluate and draw compromise in SWIPT performance against a choice of modulation scheme out of the ASK constellation space.
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