Digitized self-oscillating loop for piezoelectric transformer-based power converters

Marzieh Ekhtiari, T. Andersen, Zhe Zhang, M. Andersen
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引用次数: 3

Abstract

A new method is implemented in designing of self-oscillating loop for driving piezoelectric transformers. The implemented method is based on combining both analog and digital control systems. Digitized delay, or digitized phase shift through the self-oscillating loop results in a very precise frequency control and ensures an optimum operation of the piezoelectric transformer in terms of voltage gain and efficiency. In this work, additional time delay is implemented digitally for the first time through 16 bit digital-to-analog converter to the self-oscillating loop. Delay control setpoints updates at a rate of 417 kHz. This allows the control loop to dynamically follow frequency changes of the transformer in each resonant cycle. The operation principle behind self-oscillating is discussed in this paper. Moreover, experimental results are reported.
基于压电变压器的电力变换器的数字化自振荡回路
提出了一种新的压电变压器驱动自激回路设计方法。所实现的方法是基于模拟和数字控制系统相结合。数字化延迟或数字化相移通过自振荡回路实现非常精确的频率控制,并确保压电变压器在电压增益和效率方面的最佳运行。在这项工作中,额外的时间延迟首次通过16位数模转换器实现到自振荡回路。延迟控制设定值以417 kHz的速率更新。这允许控制回路在每个谐振周期内动态跟踪变压器的频率变化。本文讨论了自振荡的工作原理。并报道了实验结果。
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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