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An Extended Field Reconstruction Method for Modeling of Switched Reluctance Machines

机译:开关磁阻电机建模的扩展场重构方法

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This paper presents an extended Field Reconstruction Method (FRM) to model a Switched Reluctance Machine (SRM), which is set apart from other electric machines by its double-saliency and magnetic saturation. Traditional magnetic models of SRM developed using Finite Element Analysis (FEA) are computationally inefficient. This, in turn, limits their application in simulation of SRM drive system especially under iterative optimization procedures. FRM can significantly reduce the computational time by utilizing a small number of static magnetic field snapshots to establish the basis functions which are then used to reconstruct the magnetic field with high accuracy. In this paper an extended version of FRM is introduced within which effects of magnetic saturation and double saliency are taken into account. Results from FRM, FEA and experiments are compared and good accuracy is observed.
机译:本文提出了一种扩展的场重构方法(FRM),以对开关磁阻电机(SRM)进行建模,该开关磁阻电机因其双凸度和磁饱和而与其他电机区分开。使用有限元分析(FEA)开发的SRM的传统磁性模型在计算上效率低下。反过来,这限制了它们在SRM驱动系统仿真中的应用,尤其是在迭代优化程序下。 FRM可以通过利用少量的静态磁场快照来建立基本函数,从而显着减少计算时间,然后将这些基本函数用于高精度地重建磁场。本文介绍了FRM的扩展版本,其中考虑了磁饱和和双重凸度的影响。比较了FRM,FEA和实验的结果,并观察到了良好的准确性。

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