Finite element calculation of the dq-axes inductances and torque of synchronous reluctance motor

S. Tahi, R. Ibtiouen
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引用次数: 11

Abstract

The most important parameters of a synchronous reluctance machine (SynRM) from a design optimization and control point of view are both the ratio and the difference between the inductances in the d and q axes, since they define the machine's characteristic such as torque and power factor. The direct-axis and quadrature-axis inductances of SynRM are usually considered as constant. In fact, both the d-axis and q-axis inductances vary with load conditions because of magnetic circuit saturation. In this paper a SynRM with salient-pole rotor is studied. Using finite element analysis, a procedure based on the energy perturbation method, is developed to calculate the self and cross-coupling inductances. The effect of saturation and cross saturation on the inductances behavior and on the produced torque is discussed.
同步磁阻电动机dq轴电感和转矩的有限元计算
从设计优化和控制的角度来看,同步磁阻电机(SynRM)最重要的参数是d轴和q轴电感的比值和差值,因为它们定义了电机的特性,如转矩和功率因数。SynRM的直轴电感和正交轴电感通常被认为是常数。实际上,由于磁路饱和,d轴和q轴电感都随负载条件而变化。本文研究了一种带凸极转子的SynRM。利用有限元分析,提出了一种基于能量摄动法的自耦合电感和交叉耦合电感计算方法。讨论了饱和和交叉饱和对电感特性和产生转矩的影响。
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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