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An Optimal Minimum-Component DC–DC Converter Input Filter Design and Its Stability Analysis

机译:最优最小成分DC-DC转换器输入滤波器的设计及其稳定性分析

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摘要

Very high switching frequency (1 MHz or more) is highly desired for dc–dc converters to achieve high power density. State-of-the-art dc–dc converters are capable of achieving high-efficiency with the high-switching frequency, which promotes an opportunity and challenge for a redesign of the traditional input filters. This paper describes an optimal input filter design with minimum components count, which consists of fewer passive components than common input filter topologies. The proposed methodology leverages parasitic parameters of both converter and filter elements in order to achieve optimal performance. It also features high flexibility without sacrificing performance. The stability analysis has been performed to ensure a stable system. A prototype has been realized for a transformer-coupled zero voltage switching buck–boost converter and performance has been successfully validated against design targets.
机译:dc-dc转换器非常需要很高的开关频率(1 MHz或更高),以实现高功率密度。最新的DC-DC转换器能够以高开关频率实现高效率,这为重新设计传统输入滤波器带来了机遇和挑战。本文介绍了一种具有最少组件数量的最优输入滤波器设计,该组件由比常规输入滤波器拓扑更少的无源组件组成。所提出的方法利用转换器和滤波器元件的寄生参数以获得最佳性能。它还具有高度的灵活性,而不会牺牲性能。进行稳定性分析以确保系统稳定。已经实现了变压器耦合零电压开关降压-升压转换器的原型,并且已经针对设计目标成功验证了性能。

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