Modeling, Magnetic Design, and Simulation Methods Considering DC Superimposition Characteristic of Powder Cores Used in Power Converters

J. Imaoka, Kenkichiro Okamoto, M. Shoyama, Y. Ishikura, M. Noah, Masayoshi Yamamoto
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引用次数: 4

Abstract

Powder cores have been gained much attention as one of the attractive magnetic cores used in power converters due to their superior features such as high saturation flux density or distributed air gaps. However, powder cores have a unique feature that the relative permeability of the magnetic core varies depending on the magnetic field intensity. However, modeling the variable relative permeability, the design method for powder cores, and computer simulation methods of non-linear inductance are well not discussed in the related literature. Therefore, this paper proposes a novel modeling, magnetic design methods, and simulation technique considering dc superimposition characteristics of powder cores. The modeling method uses a novel model equation representing the behavior of relative permeability under the dc current superimposition condition, which is helpful to evaluate the performance of powder cores and to properly design various magnetic components. Theoretical analysis has been presented and the effectiveness and the validity of the proposed methods are evaluated through simulation and experimental tests.
考虑电源变换器直流叠加特性的粉末铁芯建模、磁设计与仿真方法
粉末磁芯由于具有较高的饱和磁通密度和分布的气隙等优点,作为一种有吸引力的磁芯在电源变换器中得到了广泛的关注。然而,粉末磁芯有一个独特的特点,即磁芯的相对磁导率随磁场强度的变化而变化。然而,对变相对磁导率的建模、粉芯的设计方法以及非线性电感的计算机模拟方法等方面的研究尚未在相关文献中得到很好的探讨。为此,本文提出了一种考虑粉末铁心直流叠加特性的新型建模、磁设计和仿真技术。该建模方法采用了一种新的模型方程来表示直流电流叠加条件下的相对磁导率行为,这有助于评估粉末铁芯的性能和合理设计各种磁性元件。本文进行了理论分析,并通过仿真和实验验证了所提方法的有效性和有效性。
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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