Power Optimized Waveform for Wireless Power Transfer Systems : Simulations and Experiments

H. Takhedmit, Mahdi Hamidouche, Viet-Duc Pham, L. Cirio
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Abstract

This paper focuses on the power optimization waveform, applied to the improvement of the efficiency and/or the maximum supply distance of far-field wireless power transfer systems. The emphasis is given to RF pulse modulation signal and multisine waveforms. The power conversion efficiency (PCE) of a RF-to-dc conversion circuits is strongly impacted by the threshold voltage of Schottky diodes at low RF power levels, and one of the objectives is to improve the efficiency under these conditions. An ultra-wide band rectifier, operating from 1.6 to 2.8 GHz, is used in this work. Significant improvement of the efficiency, compared to a CW signal, has been shown especially when the power level is small and the output load is large. Also, this work allowed evaluating the important parameters of the waveforms to be optimized.
无线电力传输系统的功率优化波形:模拟与实验
本文重点研究了远场无线电力传输系统的功率优化波形,并将其应用于提高远场无线电力传输系统的效率和最大供电距离。重点介绍了射频脉冲调制信号和多正弦波形。RF-to-dc转换电路的功率转换效率(PCE)在低射频功率水平下受到肖特基二极管阈值电压的强烈影响,在这种情况下提高效率是目标之一。在这项工作中使用了一个超宽带整流器,工作频率为1.6至2.8 GHz。与连续波信号相比,效率有了显著的提高,特别是在功率水平小而输出负载大的情况下。此外,这项工作允许评估波形的重要参数进行优化。
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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