基于修正Steinmetz方程的铁和铁磁材料损耗计算

J. Reinert, A. Brockmeyer, R. W. D. Doncker
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引用次数: 643

摘要

本文讨论了非正弦磁通波形对电力电子应用中电感、变压器和电机中铁磁和铁磁材料的再磁化损耗的影响。磁通的非正弦变化源于在不同开关频率下由非正弦电压和电流驱动这些器件。对动态磁滞模型的详细研究表明,磁性材料损耗的物理根源是平均再磁化速度,而不是再磁化频率。这一原理导致了对磁芯损耗最常见的计算规则的修改,即“修正Steinmetz方程”(MSE)。在MSE中,由平均再磁化速度计算的等效频率代替了再磁化频率。这种方法首次允许在使用经典Steinmetz方程的可用参数集的同时计算任意波形磁通的时域损耗,也可以包括对损耗有重大影响的材料的直流预磁化。大量的测量验证了本文提出的修正Steinmetz方程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Calculation of losses in ferro- and ferrimagnetic materials based on the modified Steinmetz equation
This paper discusses the influence of nonsinusoidal flux-waveforms on the remagnetization losses in ferro- and ferrimagnetic materials of inductors, transformers and electrical machines used in power electronic applications. The nonsinusoidal changes of flux originate from driving these devices by nonsinusoidal voltages and currents at different switching frequencies. A detailed examination of a dynamic hysteresis model shows that the physical origin of losses in magnetic material is the average remagnetization velocity rather than the remagnetization frequency. This principle leads to a modification of the most common calculation rule for magnetic core losses, i.e., to the "modified Steinmetz equation" (MSE). In the MSE the remagnetization frequency is replaced by an equivalent frequency which is calculated from the average remagnetization velocity. This approach allows, for the first time, to calculate the losses in the time domain for arbitrary waveforms of flux while using the available set of parameters of the classical Steinmetz equation, DC premagnetization of the material, having a substantial influence on the losses, can also be included. Extensive measurements verify the modified Steinmetz equation presented in this paper.
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