防止异步电动机驱动转子转速振荡的软起动器定子磁链闭环控制方法

Tae-hoon Kim, Dae-Young Yang, Tae-Ho Oh, Young-Seok Kim, Sang-Hoon Lee, D. Cho
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引用次数: 0

摘要

提出了一种防止软起动器转速振荡的闭环定子磁链控制方法。软起动器通过逐渐减小起动角度来控制感应电动机的起动电流。然而,当传统的点火角控制方法应用于低惯量转子和负载的感应电动机时,随着转子转速达到额定转速,定子磁链量级迅速增大。定子磁链大小的快速增加导致速度振荡。为了克服这些问题,本文提出了一种定子磁链大小闭环控制方法,以防止定子磁链的快速增加。首先,利用转矩-转速曲线和暂态定子磁链和转子电流方程,分析了在低惯性下转速振荡的情况;然后,考虑定子磁链大小与输入电压的关系,设计了闭环控制器。所提出的定子磁链控制方法可以使定子磁链大小以中等速度增加,并防止启动时的速度振荡。以某轻载异步电动机为例进行了MATLAB/SIMULINK仿真,验证了所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Closed-loop Stator Flux Control Method for Soft Starters to Prevent Rotor Speed oscillations in Induction Motors Drive
This paper presents a closed-loop stator flux control method for a soft starter to prevent speed oscillations. A soft starter controls starting current of an induction motor by gradually decreasing the firing angle. However, when the conventional firing angle control method is applied to the induction motor with a low inertia rotor and load, the stator flux magnitude rapidly increases as the rotor speed reaches the rated speed. This rapid increase in stator flux magnitude results in speed oscillations. To overcome the issues, in this paper, a stator flux magnitude closed-loop control method is proposed to prevent the rapid increases of the stator flux. First, the situation where speed oscillations can occur with low inertia is analyzed, using the torque-speed curve and the equations of the stator flux and rotor current in the transient state. Then, the closed-loop controller is designed by considering the relationship between the stator flux magnitude and the input voltage. The proposed stator flux control method allows the stator flux magnitude to increase at a moderate speed and prevents speed oscillation at start-up. The MATLAB/SIMULINK simulations using the model of a lightly loaded induction motor are performed and show the effectiveness of the proposed method.
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