Design of optimized coupling factor for minimum inductor current ripple in rapid EV charger systems using multi-winding coupled inductor

Taewon Kang, Y. Suh
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引用次数: 2

Abstract

This paper investigates the design of 3-winding coupled inductor for minimum inductor current ripple in rapid traction battery charger systems. Based on the general circuit model of 3-winding coupled inductor together with the operating principles of dc-dc converter, the relationship between the ripple size of inductor current and the coupling factor for a 3-winding coupled inductor is derived under the different duty ratio. The optimal coupling factor which corresponds to a minimum inductor ripple current becomes -0.5, i.e. a complete inverse coupling without leakage inductance, as the steady-state duty ratio operating point approaches 1/3 or 2/3. In an opposite manner, the optimal coupling factor value of zero, i.e. zero mutual inductance, is required when the steady-state duty ratio operating point approaches either zero or one. Coupled inductors having optimal coupling factor can minimize the ripple current of inductor and battery ripple current resulting in a reliable and efficient operation of battery chargers.
多绕组耦合电感快速充电系统中电感电流纹波最小的优化耦合系数设计
本文研究了快速牵引蓄电池充电系统中电感电流纹波最小的三绕组耦合电感的设计。基于三绕组耦合电感的一般电路模型,结合dc-dc变换器的工作原理,推导了不同占空比下三绕组耦合电感电流纹波大小与耦合系数的关系。当稳态占空比工作点接近1/3或2/3时,最小电感纹波电流对应的最佳耦合系数为-0.5,即完全反耦合,无漏感。反之,当稳态占空比工作点趋近于零或趋近于一时,则要求最佳耦合因子值为零,即互感为零。耦合电感具有最优的耦合系数,可以使电感的纹波电流和电池的纹波电流最小,从而使电池充电器可靠、高效地工作。
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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