Complex Impedance Matching for Far-Field Acoustic Wireless Power Transfer

A. Y. Pandiyan, M. Kiziroglou, E. Yeatman
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Abstract

In this study, different load matching techniques are analysed to identify the optimum method to deliver power to the receiver for acoustic wireless power transfer systems. Complex impedance matching of the system’s transducers provides an advantage to drive the transmitter off-resonance for cases where there is a resonance mismatch between the transducers due to make, defect or ambient conditions. By studying the effect of impedance matching for different frequencies near the resonance frequency, similar power levels can be achieved for a wider bandwidth of frequencies using complex impedance matching. Thus, increased power can be delivered to the receiver by controlling the frequency of the transmitter, which can be exploited for beam steering along the propagation axis when standing waves are prominent between the transducers. A summary of the power experimentally extracted for the different loading techniques presented in this paper demonstrates a 4 kHz increase in system bandwidth and 140% more power can be delivered by tuning both transducers with complex impedance matching.
远场声学无线电力传输的复杂阻抗匹配
在本研究中,分析了不同的负载匹配技术,以确定声学无线电力传输系统向接收器输送电力的最佳方法。当由于制造、缺陷或环境条件导致换能器之间的谐振不匹配时,系统换能器的复杂阻抗匹配提供了驱动变送器关闭谐振的优势。通过研究谐振频率附近不同频率的阻抗匹配效果,采用复阻抗匹配可以在更宽的频率带宽下获得相似的功率水平。因此,增加的功率可以通过控制发射机的频率来传递给接收器,当驻波在换能器之间突出时,可以利用发射机的频率来沿着传播轴引导波束。本文总结了不同加载技术的实验功率,表明通过调整具有复杂阻抗匹配的两个换能器,系统带宽增加4 kHz,功率增加140%。
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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