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Accurate modeling of switched reluctance motor by using improved winding function method

机译:改进的绕组函数法对开关磁阻电机进行精确建模

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A novel method to model electrical machines based on winding function theory (WFM) is proposed. In conventional WFM, it is assumed that flux lines in air gap are in radial direction. The main drawback of this assumption is inaccuracy of the simulation results. To improve the accuracy of the WFM, modified winding function theory (MWFM) is proposed. In this method WFM is improved by finite element method (FEM) in which the exact permeance function is calculated by FEM. This new approach possesses a good accuracy beside of low calculation processing time. The simulation results for a 4:6 switched reluctance motor (SRM) based on WFM and MWFM is obtained and are compared with each other. Finally proposed MWFM has been validated by FEM results. These results have shown a good accordance with FEM and therefore MWFM method is practical in such applications which require high speed modeling calculations without losing proper accuracy.
机译:提出了一种基于绕组函数理论(WFM)的电机建模方法。在常规的WFM中,假设气隙中的通量线是径向的。该假设的主要缺点是模拟结果不准确。为了提高WFM的精度,提出了改进的绕组函数理论(MWFM)。在该方法中,WFM通过有限元方法(FEM)进行了改进,其中精确的磁导函数由FEM计算。除了计算时间短之外,这种新方法还具有良好的准确性。获得了基于WFM和MWFM的4:6开关磁阻电机(SRM)的仿真结果,并将其相互比较。最终提出的MWFM已通过FEM结果进行了验证。这些结果显示出与FEM的良好一致性,因此MWFM方法在需要高速建模计算而又不损失适当精度的此类应用中是实用的。

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