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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Large-Signal Characterization of Power Inductors in EV Bidirectional DC–DC Converters Focused on Core Size Optimization
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Large-Signal Characterization of Power Inductors in EV Bidirectional DC–DC Converters Focused on Core Size Optimization

机译:专注于内核尺寸优化的EV双向DC-DC转换器中功率电感器的大信号表征

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摘要

This paper is focused on core size optimization of power inductors in bidirectional dc–dc converters. It presents an experimental large-signal characterization procedure for power inductors in electric vehicle applications and a method to obtain an inductance reference value for the power inductor in dc–dc converters' simulation studies. It discusses the importance of the inductor design project by describing important constraints such as core size and saturation. The main contribution of this paper is related to the proposed dc flux cancelation technique in the bidirectional converter. A variable inductor prototype is used to replace the power inductor in order to decrease core size by improving the ripple content of the inductor current. The saturation level of the core is controlled by means of an auxiliary winding whether the converter operates in buck or boost mode. Experimental results validate the proposed methodology showing more than 50% reduction in magnetic material for similar current levels.
机译:本文重点研究双向DC-DC转换器中功率电感器的磁芯尺寸优化。它介绍了电动汽车应用中功率电感器的实验性大信号表征程序,以及在dc-dc转换器的仿真研究中获得功率电感器电感参考值的方法。它通过描述重要的约束条件(如铁心尺寸和饱和度)来讨论电感器设计项目的重要性。本文的主要贡献与双向转换器中提出的直流磁通抵消技术有关。可变电感器原型用于替换功率电感器,以通过改善电感器电流的纹波含量来减小铁芯尺寸。无论转换器是在降压还是升压模式下运行,均通过辅助绕组控制铁芯的饱和水平。实验结果验证了所提出的方法,该方法显示出在类似电流水平下磁性材料减少了50%以上。

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