Algebraic dual-energy magnetic analysis with application to variable reluctance motor design

M. Tolikas, J. Lang, J. Kirtley
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引用次数: 9

Abstract

The dual-energy method has been successfully employed in the calculation of static resistances, capacitances and inductances, yielding fast and accurate solutions. Two different directions can be followed in applying the method, one is the more widely known "method of tubes and slices", the other is the algebraic approach and is explored further in this paper. The literature on the algebraic dual-energy method involves trivial examples with boundaries, boundary conditions and source distributions that are easily handled. However, the geometry of the variable reluctance motor at the unaligned position, the dominating curvatures characterizing its electromagnetic field distribution and the presence of a large number of boundary conditions arising at the steel boundaries, provide a challenging exercise in the application, behavior and effectiveness of the dual-energy method in a realistic framework.
代数双能磁分析及其在变磁阻电机设计中的应用
双能量法已成功地应用于静电电阻、电容和电感的计算中,得到了快速准确的解。该方法的应用有两种不同的方向,一种是较为广为人知的“管片法”,另一种是代数方法,本文对此进行了进一步的探讨。关于代数双能法的文献涉及一些简单的例子,这些例子具有边界、边界条件和易于处理的源分布。然而,可变磁阻电机在非对准位置的几何形状,表征其电磁场分布的主要曲率以及在钢边界处产生的大量边界条件的存在,为双能方法在现实框架中的应用,行为和有效性提供了具有挑战性的练习。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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