一种新颖的集成磁性三相LLC谐振变换器,具有更低的关断损耗和更高的功率密度

M. Noah, S. Kimura, S. Endo, Masayoshi Yamamoto, J. Imaoka, K. Umetani, W. Martínez
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引用次数: 21

摘要

这项工作的目的是提出一种具有集成磁性的三相LLC变换器的新拓扑结构。介绍了转炉的运行情况,并进行了全面的理论分析;该分析遵循一次谐波近似(FHA)方法来简化系统模型。通常,LLC变换器只要工作在感应区,就能实现零电压开关。因此,关断损耗被认为是变换器开关损耗的主要来源。本文对设计进行了优化,使开关损耗最小化。另一方面,在这种拓扑结构中采用三个离散变压器铁芯肯定会增加转换器的尺寸和体积。因此,引入了一种新颖的磁集成概念,将三相的所有磁分量有利地组合到单个磁芯中,以提高变换器的功率密度。最后,通过实验结果验证了优化设计,显示了关断损耗的降低和采用所提出的集成变压器的有效性,其中变换器的功率密度可以增加56%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel three-phase LLC resonant converter with integrated magnetics for lower turn-off losses and higher power density
The aim of this work is to present a novel topology of a three-phase LLC converter with integrated magnetics. The converter operation and the comprehensive theoretical analysis are presented; this analysis follows the first harmonic approximation (FHA) approach to simplify the system model. Usually, LLC converter achieves zero voltage switching (ZVS) as long as it working in the inductive region. Therefore, the turn off losses are considered as the main source of the switching losses in the converter. In this paper the design in optimized to minimize the switching losses. On the other hand, adapting three discrete transformer cores in this topology will definitely increase the size and volume of the converter. As a result, a novel magnetic integration concept is introduced where all magnetic components of the three-phases are advantageously combined into a single magnetic core to increase the converter power density. Finally, the experimental results are presented to verify the optimized design by showing a reduction in the turn-off losses and the effectiveness of adapting the proposed integrated transformer, in which an increment of 56% in the power density of the converter could be attained.
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