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Optimum Phase Shift in the Self-Oscillating Loop for Piezoelectric-Transformer-Based Power Converters

机译:基于压电变压器的功率转换器的自振荡回路中的最佳相移

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摘要

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. Digitally controlled time delay through the self-oscillating loop results in very precise frequency control and ensures optimum operation of the piezoelectric transformer in terms of gain and efficiency. Time delay is implemented digitally for the first time through a 16 bit digital-to-analog converter in the self-oscillating loop. The new design of the delay circuit provides 45 ps time resolution, enabling fine-grained control of phase in the self-oscillating loop. This allows the control loop to dynamically follow frequency changes of the transformer in each resonant cycle. Ultimately, by selecting the optimum phase shift, maximum efficiency under the load and temperature condition is achievable.
机译:在设计用于驱动压电变压器的自振荡环路中实现了一种新方法。实现的方法基于组合模拟和数字控制系统。通过自振荡回路进行数字控制的时间延迟导致非常精确的频率控制,并在增益和效率方面确保压电变压器的最佳操作。时间延迟在自振荡循环中首次通过16位数字到模拟转换器来以数字方式实现。延迟电路的新设计提供了45 ps的时间分辨率,使自振荡环路中的相位进行细粒度控制。这允许控制回路在每个谐振循环中动态遵循变压器的频率变化。最终,通过选择最佳相移,可实现负载和温度条件下的最大效率。

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