直接转矩控制在低速时的动态性能优于标量控制

N. V. Naik, S. P. Singh
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引用次数: 13

摘要

本文介绍了异步电动机速度控制的标量控制和直接转矩控制。标量控制易于实现,但动态响应较差。除标量控制外,还采用空间矢量脉宽调制(SVPWM)来有效利用直流链路电压,即SVPWM具有良好的稳压性,降低了逆变器电压和电流中相当大的谐波。采用SVPWM直接转矩控制技术,改善了异步电动机的动态响应。在Matlab环境中对异步电动机的标量控制和直接转矩控制进行了性能仿真,比较了它们在相似工况下的响应。与标量控制相比,直接转矩控制(即更短的瞬态时间)即使在施加负载的情况下,也能有效地改善异步电动机的动态性能、调速性能、电流中的THD和转矩畸变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved dynamic performance of direct torque control at low speed over a scalar control
This paper presents the scalar control as well as direct torque control for speed control of induction motor. The scalar control is an easy to implement but it gives poor dynamic response. In addition to the scalar control the space vector pulse width modulation (SVPWM) is used for effective utilization of the dc-link voltage i.e. SVPWM is having the good voltage regulation and reduces the considerable harmonics in voltage as well as current of the inverter. The dynamic response of the induction motor is improved using direct torque control with SVPWM technique. The performance of induction motor with scalar control and direct torque control is simulated in the Matlab environment and compared their response under similar operating conditions. The dynamic performance, the speed regulation, THD in the current, and the torque distortion of induction motor are effectively improved with direct torque control (i.e. lesser transient time) even while applying the load in comparison to scalar control.
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