Dynamic behaviour of 12/8 switched reluctance motor

Sihem Saidani, M. Ghariani
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引用次数: 1

Abstract

In the recent decades, the switched reluctance motor has been a good candidate in automobile industries for its simplicity and ruggedness, its small inertia and high torque and speed range. Having a simple construction with neither winding nor magnets in the rotor, the SRM has a doubly salient stator synchronous and singly excited throw it the torque is simply developed due to reluctance variation. Nevertheless, the switched reluctance machine still has incapacities such as a ripple torque and acoustic noise. Thus, many issues for hybrid electric vehicle application requirements have been developed to reduce the torque ripple and ensure more stability and less noise. Based on static characteristics as torque and flux linkage, the nonlinear model of switched reluctance motor is represented for a 12/8 SRM model aimed to a starter alternator application in this paper using MATLAB/Simulink to recognize an optimal choice of turn-off angle and suitable controller and converter for the torque and speed optimization. The dynamic model explained next is using a measured data of static torque flux linkage and characteristics obtained with a software been used for simulation in the MATLAB/Simulink data base.
12/8开关磁阻电机的动态特性
近几十年来,开关磁阻电机以其结构简单、坚固耐用、惯量小、转矩和转速范围大等优点成为汽车工业的理想选择。SRM结构简单,转子中既没有绕组也没有磁铁,它有一个双凸极定子同步和单励磁,它的转矩只是由于磁阻变化而产生的。然而,开关磁阻电机仍然存在纹波转矩和噪声等缺点。因此,针对混合动力汽车的应用要求,人们提出了许多问题,以减少扭矩波动,确保更高的稳定性和更低的噪音。本文基于转矩和磁链的静态特性,以启动交流发电机为研究对象,建立了12/8 SRM模型的开关磁阻电机非线性模型,利用MATLAB/Simulink识别出关断角的最优选择以及合适的控制器和变换器,实现转矩和转速的优化。接下来介绍的动态模型是利用静止转矩磁链的实测数据和特性,并在MATLAB/Simulink数据库中使用软件进行仿真。
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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