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Computation of core losses in electrical machines using improved models for laminated steel

机译:利用改进的叠层钢模型计算电机的铁心损耗

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摘要

Two new models for specific power losses in cold-rolled motor lamination steel are described together with procedures for coefficient identification from standard multifrequency Epstein or single sheet tests. The eddy-current and hysteresis loss coefficients of the improved models are dependent on induction (flux density) and/or frequency, and the errors are substantially lower than those of conventional models over a very wide range of sinusoidal excitation, from 20 Hz to 2 kHz and from 0.05 up to 2 T. The model that considers the coefficients to be variable, with the exception of the hysteresis loss power coefficient that has a constant value of 2, is superior in terms of applicability and phenomenological support. Also included are a comparative study of the material models on three samples of typical steel, mathematical formulations for the extension from the frequency to the time domain, and examples of validation from electrical machine studies.
机译:描述了两种新的冷轧电动机叠层钢的特定功率损耗模型,以及用于通过标准多频爱泼斯坦或单片测试确定系数的程序。改进模型的涡流和磁滞损耗系数取决于感应(磁通密度)和/或频率,并且在从20 Hz到2的非常宽的正弦激励范围内,误差明显低于传统模型的误差。从0.05 kHz到2T。从系数的可变性来看,该模型除具有恒定值为2的磁滞损耗功率系数外,在适用性和现象学支持方面均优越。还包括对三种典型钢样品的材料模型进行的比较研究,从频率到时域扩展的数学公式以及电机研究的验证示例。

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