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Design of Optimized Coupling Factor for Minimum Inductor Current Ripple in DC-DC Converter using Multi-winding Coupled Inductor

机译:使用多绕组耦合电感器DC-DC转换器中最小电感电流纹波优化耦合因子的设计

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摘要

The magnetic coupling of filter inductors is widely utilized in various power electronics application fields, including dc-dc converters in EV charger systems, in order to enhance the filtering performance while maintaining the minimal filter size. The optimal distribution of self and mutual inductance of the coupled inductor is regarded as one of the important design tasks with respect to the coupled inductor. This paper proposes a novel method to design the optimal coupling factor for a generalized n-winding coupled inductor, which generates the least size of inductor current ripple in phase-staggered multi-paralleled dc-dc converters. The explicit mathematical form of the optimal coupling factor for a generalized n-winding coupled inductor in n- phase staggered multi-paralleled dc-dc converters is presented. The general equations for the n-winding coupled inductor are verified through the example case of the 3-winding coupled inductor. The experimental results successfully confirmed the newly proposed method of obtaining the optimal coupling factor.
机译:滤波器电感器的磁耦合广泛用于各种电力电子应用领域,包括EV充电器系统中的DC-DC转换器,以便在保持最小滤波器尺寸的同时增强滤波性能。耦合电感器的自我和互感的最佳分布被认为是相对于耦合电感器的重要设计任务之一。本文提出了一种设计一种设计广义N绕组耦合电感器的最佳耦合因子的新方法,其在相位交错的多并联DC-DC转换器中产生最小尺寸的电感电流纹波。呈现了N相交错的多并行DC-DC转换器中的广义N绕组耦合电感器的最佳耦合因子的显式数学形式。通过3绕组耦合电感器的示例性情况验证N绕组耦合电感器的一般方程。实验结果成功证实了获得最佳耦合因子的新提出的方法。

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