Wireless resonant-type power transfer links with relay elements: Harmonic balance design

A. Costanzo, F. Mastri, M. Dionigi, M. Mongiardo
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引用次数: 9

Abstract

In a wireless power transmission system the oscillator power is transmitted through resonant coils over variable distances. The simplest systems are realized with direct connection between the oscillator and the resonant coil. To improve the system performance one or more relay elements can be used. In order to take into account the resonant frequency variations, which also tune oscillation frequency, a broadband harmonic balance (HB) design of the system is carried out with the oscillator load including the resonant coupling and the rectifier. The oscillator efficiency, the RF-to-DC system efficiency and the DC power are then directly optimized for any coupling distance of interest. A Royer-type oscillator is designed and prototyped using the proposed technique. The oscillator exhibits 40 W and 75% conversion efficiency while the WPT system efficiency, DC-to-DC, is better than 60% for coupling distances of the order of 10 cm.
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带有继电器元件的无线谐振型电力传输链路:谐波平衡设计
在无线电力传输系统中,振荡功率通过谐振线圈在可变距离上传输。最简单的系统是通过振荡器和谐振线圈的直接连接来实现的。为了提高系统性能,可以使用一个或多个继电器元件。为了考虑谐振频率变化对系统振荡频率的调节作用,在振荡负载包括谐振耦合和整流器的情况下,对系统进行了宽带谐波平衡设计。振荡器效率、RF-to-DC系统效率和直流功率直接针对任何感兴趣的耦合距离进行优化。利用所提出的技术设计并制作了一个罗耶型振荡器。该振荡器的功率为40 W,转换效率为75%,而WPT系统的dc - dc效率在耦合距离为10 cm数量级时优于60%。
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