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3D FEM characterization of a switched reluctance motor from direct experimental determination of the material magnetization curve

机译:通过直接实验确定材料磁化曲线来对开关磁阻电机进行3D FEM表征

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摘要

Analytical characterization of a switched reluctance motor (SRM) by means of magnetic circuit theory can be a tedious task. Specific software based on the finite elements method (FEM) for solving non linear magneto-static problems has proved very useful for this characterization. However, to solve the Maxwell equations it is necessary first to know the magnetization curve of the material used for building the motor, which may not be available in the program materials library. A simple and low cost method for a direct determination of the first magnetization curve of a magnetic material is presented in this communication. Through one single test of short duration, (which allows to reach high values of the magnetic field strength while keeping the material temperature practically constant), we obtain a B-H curve that fits correctly to the samples obtained by a traditional method requiring the identification of multiple hysteresis loops. This B-H curve has been included in a FEM program to determine the flux linkage-current-position characteristic of a SRM prototype. The results again fit those obtained experimentally, confirming the validity of the proposed method.
机译:借助磁路理论对开关磁阻电机(SRM)进行分析表征可能是一项繁琐的任务。事实证明,基于有限元方法(FEM)解决非线性静磁问题的专用软件非常有用。但是,要求解麦克斯韦方程式,首先必须知道用于构建电动机的材料的磁化曲线,这在程序材料库中可能不可用。在本文中介绍了一种直接确定磁性材料的第一磁化曲线的简单且低成本的方法。通过短时间的单个测试(可以在保持材料温度实用恒定的同时达到较高的磁场强度),我们获得了一条BH曲线,该曲线正确地拟合了通过传统方法(需要鉴定多个)获得的样品磁滞回线。该B-H曲线已包含在FEM程序中,以确定SRM原型的磁链电流位置特性。结果再次适合于通过实验获得的结果,证实了所提出方法的有效性。

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