磁滞电流结合正弦脉宽调制的异步电机调速控制

M. Trần, C. Tran, B. H. Dinh, Tai Thanh Phan, Trang Huynh-Cong Nguyen, Huy Truong Nguyen, Giang Thi-Tuyet Lai, Huy Xuan Phan
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摘要

提出了一种结合迟滞电流(HC)和正弦脉宽调制(SPWM)产生逆变器开关脉冲的增强技术,用于异步电机驱动中基于转子磁场定向控制(RFOC)策略的速度控制。HC方法是一种简单、鲁棒的控制方法,在转速控制中响应速度快,但转子转速和定子电流存在较大纹波。SPWM方法是三角载波调制方法中比较流行的一种方法,对电机的转速和转矩控制精度高;然而,该方法的缺点是在瞬态阶段速度响应的高超调。本文提出了一种将上述两种方法相结合的电机调速方法——迟滞电流正弦脉宽调制(HCSPWM)。仿真是在MatLab/Simulink环境下在不同的速度范围内实现的。仿真结果表明,在相同工作条件下,该方法在瞬态下比SPWM方法具有更低的超调量,在稳态下比HC方法具有更低的纹波。这是一篇在知识共享署名许可(http://creativecommons.org/licenses/by/4.0/)条款下发布的开放获取文章,该许可允许在任何媒介上不受限制地使用、分发和复制,只要原始作品被适当引用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Speed Control Applying Hysteresis Current Combining Sine Pulse Width Modulation for Induction Motor Drive
An enhanced technique combining hysteresis current (HC) and sine pulse width modulation (SPWM) for generating the switching pulse to the inverter is proposed for speed control based on a rotor field-oriented control (RFOC) strategy in the induction motor drive. HC method is a simple and robust control method, it has a fast response in speed control, but the rotor speed and the stator current have high ripple. SPWM method, a popular method in triangular carrier wave modulation methods, has high precision in controlling the speed and torque of the motor; however, the high overshoot of the speed response in the transient phase is the weakness of this method. In this paper, a combined method of the above two methods, called hysteresis current-sine pulse width modulation (HCSPWM), is proposed for motor speed control. The simulations are implemented at various speed ranges in MatLab/Simulink environment. The simulation results have proved that the proposed method has a lower overshoot than the SPWM method in the transient-state and a lower ripple than the HC method in the steady-state in the same operating condition.This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium provided the original work is properly cited.
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