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A Best-Fit Model of Power Losses in Cold Rolled-Motor Lamination Steel Operating in a Wide Range of Frequency and Magnetization

机译:在宽频率和磁化范围内工作的冷轧电动机叠层钢的最佳功率损耗模型

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摘要

A procedure is described for identifying a mathematical model of core losses in ferromagnetic steel based on a minimal amount of experimental data. The new model has a hysteresis loss multiplicative coefficient variable only with frequency, a hysteresis loss power coefficient variable both with frequency and induction and a combined coefficient for eddy-current and excess losses that is, within a set frequency range, variable only with induction. Validation was successfully performed on a large number of different samples of nongrain oriented fully and semiprocessed steel alloys. Over a wide range of frequencies between 20 Hz and 2.1 kHz and inductions from 0.05 up to 2 T, the errors of the proposed model are substantially lower than those of a conventional model with fixed value coefficients.
机译:描述了一种基于最少数量的实验数据来识别铁磁钢芯损耗数学模型的程序。新模型具有仅随频率变化的磁滞损耗乘数系数,随频率和感应变化的磁滞损耗功率系数,以及在设定频率范围内涡流损耗和过大损耗的组合系数,仅随频率变化。在大量不同的非晶粒取向的全加工和半加工钢合金样品上成功进行了验证。在20 Hz至2.1 kHz的宽频率范围内以及从0.05到2 T的感应范围内,提出的模型的误差都大大低于具有固定值系数的传统模型的误差。

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