Estimation of Parasitic Resistance of Electrolytic Capacitor and Filter Inductor and Prediction of Input Filter Induced Oscillations in a Switch-Mode Magnet Power Supply

R. Gour, M. Borage, A. Singh, S. Tiwari
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Abstract

In switch-mode power converters with large ratings, it is important to be able to predict the parasitic resistances associated with circuit elements such as electrolytic capacitor and filter inductor in the initial converter design stage itself to avoid the cost and time associated with actual design, prototype fabrication, and testing of these components. Knowing the values of parasitic elements is also important as they decide the possibility of closed-loop instability, besides affecting the other circuit parameters. In this paper, a way to estimate the equivalent series resistance of electrolytic capacitor and the winding resistance of filter inductor is proposed leading to their closed form expressions in terms of system parameters. Using these, procedure to predict the closed-loop instability induced due to the input filter is exemplified with illustrative calculations.
开关磁铁电源中电解电容和滤波电感寄生电阻的估计及输入滤波器诱导振荡的预测
在具有大额定值的开关模式功率变换器中,能够在初始变换器设计阶段预测与电路元件(如电解电容和滤波电感)相关的寄生电阻非常重要,以避免与这些元件的实际设计、原型制造和测试相关的成本和时间。了解寄生元件的值也很重要,因为它们除了影响其他电路参数外,还决定了闭环不稳定的可能性。本文提出了一种估算电解电容等效串联电阻和滤波电感绕组电阻的方法,得到了它们在系统参数方面的封闭表达式。利用这些方法,用说明性计算举例说明了预测由输入滤波器引起的闭环不稳定性的过程。
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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