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Time-Harmonic Induction-Machine Model Including Hysteresis and Eddy Currents in Steel Laminations

机译:钢叠层中包含磁滞和涡流的时谐感应电机模型

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We have studied electromagnetic losses of a frequency-converter-fed cage-induction motor by using a numerical machine model that includes eddy-current and hysteresis phenomena in electrical steel sheets. We used the model to solve the two-dimensional (2-D) time-harmonic field and winding equations of a cage-induction machine, utilizing a finite-element method and phasor variables. We used complex reluctivity to couple the hysteresis and eddy currents in the sheets with the 2-D analysis. The model modifies the absolute value of the reluctivity according to a one-dimensional (1-D) eddy-current solution developed in the lamination thickness. To define the argument of the reluctivity, we applied both the 1-D field solution and measured hysteresis data. We compared computations of additional electromagnetic losses in a 37-kW test machine due to the higher harmonics of a frequency-converter supply with experimental results. The agreement is found to be reasonable.
机译:通过使用包括电磁钢板中的涡流和磁滞现象的数值模型,我们研究了变频器馈电的笼式感应电动机的电磁损耗。我们利用有限元方法和相量变量,使用该模型求解笼式感应电机的二维(2-D)时谐磁场和绕组方程。我们使用复数磁阻将二维磁片中的磁滞和涡流耦合在一起。该模型根据在叠层厚度中产生的一维(1-D)涡流解来修改磁阻的绝对值。为了定义磁阻的论点,我们应用了一维场解和测得的磁滞数据。我们将37 kW测试机中由于变频器电源的高次谐波导致的额外电磁损耗的计算结果与实验结果进行了比较。该协议被认为是合理的。

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