Preliminary design of reluctance synchronous machines using simplified magnetic circuit analysis

T. Hubert, M. Reinlein, A. Kremser, H. Herzog
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引用次数: 2

Abstract

The performance of a reluctance synchronous machine (RSM) strongly depends on the well-designed geometry of the stator and rotor. Within the intention of a high torque and a high power factor both, the difference and the ratio of the direct- and quadrature inductance must be set to a maximum. In this paper an easy (semi-)analytic design method is used to determine these inductances for a reluctance machine with a standard induction machine stator and a multiple flux-barrier rotor. By varying the rotor and stator dimensions, such as the bore diameter and slot geometry, the effect on the difference and the ratio of the inductances and therefore on the output performance parameters is studied. For the analysis a simplified analytical model, such as a magnetic circuit model of the reluctance synchronous machine is created and solved iteratively. The RSM leakage inductances are determined by using the same analytical equations as used for induction motors. An optimum design for various objective functions like maximum torque, maximum torque per kVA and maximum torque per volume is found, by the means of the analytic model. As a result important conclusions are achieved, regarding the stator and rotor design, respectively.
磁阻同步电机的初步设计采用简化磁路分析
磁阻同步电机(RSM)的性能在很大程度上取决于设计良好的定子和转子的几何形状。在高转矩和高功率因数的情况下,直接电感和正交电感的差值和比值必须设置为最大值。本文采用一种简单的(半)解析设计方法来确定具有标准感应电机定子和多重磁阻转子的磁阻电机的这些电感。通过改变转子和定子的尺寸,如孔直径和槽的几何形状,研究了对电感差和电感比的影响,从而对输出性能参数的影响。为此,建立了磁阻同步电机的简化分析模型,并进行了迭代求解。用与感应电动机相同的解析方程来确定RSM的漏电感。利用解析模型,对最大转矩、每千伏安最大转矩和每体积最大转矩等目标函数进行了优化设计。得出了定子和转子设计的重要结论。
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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