同步磁阻电机建模及开闭环速度控制

D. C. Dursun, A. Yıldız, M. Polat
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引用次数: 2

摘要

同步磁阻电动机是利用磁阻转矩原理产生机械能的电机。同步磁阻电动机的转子中没有绕组或磁体。因此,它们具有廉价和坚固的结构。电动机的缺点是需要电机驱动器,转矩脉动大。随着基于电力电子的电机驱动方式的广泛应用,这些电机已成为电机领域中被广泛研究的一种电机。同步磁阻电机的驱动电路需要转子的角度位置来进行必要的开关。本研究对近年来在性能方面得到发展和应用日益广泛的该电机的d-q模型进行了研究,并对其开闭环调速进行了研究。在Matlab/Simulink中进行了仿真研究。用所得结果验证了模型的准确性。
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Modeling of Synchronous Reluctance Motor and Open and Closed Loop Speed Control
Synchronous reluctance motors are electrical machines that can generate mechanical energy with the principle of reluctance torque. Synchronous reluctance motors have no windings or magnets in their rotor. Therefore, they have a cheap and robust structure. The necessity of the motor driver and the high torque ripple are the disadvantages of these motors. These motors have become a widely studied machine in the field of electrical machines with the widespread use of power electronic based motor driving methods. The driver circuit of synchronous reluctance motor needs the rotor angular position to make the necessary switching. In this study, the d-q model of this motor, which has been developed in terms of performance and has increased in application in recent years, has been studied and open and closed loop speed control has been investigated. Simulation studies have been carried out in Matlab/Simulink. The accuracy of the model has been verified with the obtained results.
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