Using magnetic coupling to eliminate right half-plane zeros in boost converters

J. Calvente;L. Martinez-Salamero;H. Valderrama;E. Vidal-Idiarte
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引用次数: 77

Abstract

A dynamic analysis of the boost converter with an output filter reveals that magnetic coupling between inductors allows transfer of the zeros to the left half-plane of the control-to-output transfer function. Similar results requiring smaller magnetic components are obtained by combining magnetic coupling with damping of the output filter. The analysis is based on the application of the Routh-Hurtwitz's criterion to the numerator of the transfer function in order to derive the design conditions for the converter parameters. A design example illustrates the procedure, and experimental results verify the theoretical predictions. The application of these techniques will allow the design of high efficiency voltage boost-based regulators with dynamic behavior similar to buck-derived structures.
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利用磁耦合消除升压变换器中的右半平面零
对带有输出滤波器的升压变换器的动态分析表明,电感之间的磁耦合允许将零点转移到控制-输出传递函数的左半平面。通过将磁耦合与输出滤波器的阻尼相结合,可以获得需要更小磁分量的类似结果。该分析是基于对传递函数的分子应用劳斯-赫特维茨准则,从而推导出转换器参数的设计条件。设计实例说明了该方法,实验结果验证了理论预测。这些技术的应用将允许设计高效的基于电压升压的调节器,其动态行为类似于buck派生结构。
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Table of contents IEEE Power Electronics Letters blank page IEEE Power Electronics Society Information Order form for reprints 2005 Index
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