磁滞电流电压控制开关磁阻电机的负载效应

A. A. Nugroho, Muhammad Khosyi'in, Bustanul Arifin, B. Suprapto, Muhamad Haddin, Z. Nawawi
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引用次数: 1

摘要

开关磁阻电机在启动时的性能取决于施加在电机上的电流和电压。本文研究了开关磁阻电机在空载和有一定负载时,采用磁滞电流控制和电压控制两种方式启动电机的不同性能。磁阻电机的使用是由于电机结构简单,无磁性部件,坚固耐用,高速性能,高转矩惯量比,尽管有缺点,如振动和复杂的策略来控制变频器驱动电机。通过Matlab Simulink识别所达到的速度、电流和转矩,利用磁电流基准和滞回限流器在预定值进行滞回电流调节。电压控制比迟滞电流控制的性能更好,而迟滞电流控制可以实现电流的安全平滑,但性能较差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Load Effect on Switched Reluctance Motor Using Hysteresis Current and Voltage Control
Performance of the switched reluctance motor at starting depends on the current and hence the voltage applied to the motor. This paper will find the different performance of Switched Reluctance Motor both using hysteresis current control and the voltage control to start the motor at no load and a certain load. The use of reluctance motors is due to the simple motor construction, no magnetic parts, ruggedness, high-speed capability, high torque to inertia ratio although there are disadvantages such as vibration and complicated strategy to control the converter to drive the motor. The speed achieved, current, and torque will be identified using Matlab Simulink for hysteresis current regulation by using magnetic current reference and hysteresis current limiter at a predetermined value. The voltage control got better performance compared to hysteresis current control while the hysteresis current control achieved safe and smooth current, but lower performance.
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