研究磁通密度分布不均匀对铁芯损耗估计的影响

N. F. Javidi, M. Nymand, Yiren Wang, A. Forsyth
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引用次数: 0

摘要

磁芯损耗估计有几种方法,这些方法都高度依赖于磁芯中磁通密度分布的准确信息。通常假设磁芯的磁通密度均匀分布在整个磁芯中,并根据磁芯的有效磁通密度值和宏观尺寸计算磁芯的总损耗。然而,由于材料的非线性特性,磁芯内的磁通分布会随着磁芯形状和/或操作条件的变化而改变。本文研究了磁芯损耗的元素估计方法。利用有限元法研究了堆芯内的磁通密度分布,并根据该分布估计了损失。最后,对比了经典的基于有效维数的宏观堆芯损耗估计和基于元素的损耗估计。本文研究了电力电子应用中常用的两种激励波形,正弦波和方波,以及两种不同的磁芯形状,环形和e型磁芯。结果表明,在两种激励波形下,用有效尺寸估计铁芯损耗时,误差可达±10%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating the impact of uneven magnetic flux density distribution on core loss estimation
There are several approaches for loss estimation in magnetic cores, and all these approaches highly rely on accurate information about flux density distribution in the cores. It is often assumed that the magnetic flux density evenly distributes throughout the core and the overall core loss is calculated according to an effective flux density value and the macroscopic dimensions of the cores. However, the flux distribution in the core can alter by core shapes and/or operating conditions due to nonlinear material properties. This paper studies the element-wise estimation of the loss in magnetic cores. FEM has been used to investigate the flux density distribution in the core and the loss has been estimated considering this distribution. Finally, comparative results are shown between the classical macroscopic core loss estimation using effective dimensions and the element-wise loss estimation. The presented work in this paper has been carried out for two common excitation waveforms in power electronics applications, sinusoid and square-wave and for two different core shapes, toroid and E-cores. Results show that ±10% discrepancy should be expected in loss estimation of the core using effective dimensions under both excitation waveforms.
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