具有定子电流矢量与磁化电流矢量夹角观测器的异步电机频率参数控制系统

V. Meshcheryakov, O. Kryukov
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引用次数: 0

摘要

在工业中,特别是冶金中,大量先前安装的基于带相转子的异步电动机和不经济的参数控制系统的电驱动器被使用,其优点是可以从转子电路中去除部分滑动能量,并且能够获得增加的涌流多重。在这种电力驱动中使用变频器可以调整定子磁场的旋转速度,并将转子电路中的滑动和损耗保持在最低水平。然而,当转子绕组短路时,起动转矩的倍数减小。通过在转子电路中包含频率相关的有源感应电阻(IR),可以增加具有频率控制的相转子的异步电动机的启动转矩。在这种情况下,电驱动将是频率参数化的。利用定子和转子电流矢量相互位置的观测器,在处理定子和转子电流瞬时值的测量信号的基础上工作,使您可以构建具有定子电流校正的标量控制系统,从而使电动驱动器的运行达到电机绕组中损耗最小的模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FREQUENCY-PARAMETRIC CONTROL SYSTEM OF AN ASYNCHRONOUS ELECTRIC DRIVE WITH AN OBSERVER OF THE ANGLE BETWEEN THE VECTORS OF THE STATOR CURRENT AND THE MAGNETIZATION CURRENT
In industry, especially metallurgy, a large number of previously installed electric drives based on an asynchronous motor with a phase rotor with uneconomical parametric control systems are used, the advantage of which is the possibility of removing part of the sliding energy from the rotor circuit, and the ability to obtain an increased inrush current multiplicity. The use of frequency converters in such an electric drive allows you to adjust the speed of rotation of the stator field and maintain sliding and losses in the rotor circuit at a minimum level. However, when the rotor windings are shorted, the multiplicity of the starting torque decreases. Additional possibilities for maintaining an increased starting torque of an asynchronous motor with a phase rotor with frequency control are provided by the inclusion of a frequency-dependent active-inductive resistance (IR) in the rotor circuit. In this case, the electric drive will be frequency-parametric. Using an observer of the mutual position of the stator and rotor current vectors, working on the basis of processing the measured signals of instantaneous values of the stator and rotor currents, allows you to build a scalar control system with stator current correction, bringing the operation of the electric drive to the mode with minimal losses in the motor windings.
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