Design and multiobjective optimization of the parameters of switched reluctance motor

C. Lucas, F. A. Azimi, J. Moghani, H. G. Fard
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引用次数: 3

Abstract

Switched reluctance motor (SRM) has been the subject of many investigations in recent years. The SR technology is a feasible and economically advantageous option for future electromotor production in Iran. However, computational intensive analysis methods (e.g. finite element (FE) analysis) and iterative search for optimal values of design parameters (e.g. genetic algorithms) cannot be jointly carried out online. In this paper, we outline a three-stages design process for determination of the optimal electromotor specifications. In the first stage, FE analysis is used for computation of performance characteristics associated with various design parameters. Next, an interpolator is trained to establish a mapping from design parameters to performance characteristics. Finally the latter values are optimized via multicriteria genetic algorithm.
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开关磁阻电机参数的设计与多目标优化
开关磁阻电动机(SRM)是近年来许多研究的主题。SR技术是伊朗未来电机生产的一种可行且经济上有利的选择。然而,计算密集型分析方法(如有限元分析)和迭代搜索设计参数的最优值(如遗传算法)不能同时在线进行。在本文中,我们概述了确定最佳电机规格的三个阶段的设计过程。在第一阶段,有限元分析用于计算与各种设计参数相关的性能特性。接下来,训练一个插值器来建立从设计参数到性能特征的映射。最后通过多准则遗传算法对后一值进行优化。
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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