采用精确反馈线性化的非线性变磁阻电机驱动器的速度控制的设计和性能

K. Maa, B. Arundhati, M. Kumar
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引用次数: 3

摘要

同步电机驱动正迅速成为直流和感应电机驱动的一个有吸引力的替代方案,特别是在低速,高功率范围内。不同类型的控制方案,已建议变速交流驱动器,从静态电源馈电。其中,采用矢量控制的磁场定向控制策略是近年来比较流行的一种控制策略,该方案应用于同步电机驱动时的缺点是电机始终处于滞后的功率因数状态。在这里,工作。本文提出了一种逆变器同步电机驱动速度控制回路的通用设计策略,利用其固有的灵活性,在不同的电流组合下产生相同的转矩,可以实现更一般的控制类型。现有的控制方案有单位功率因数控制、转矩角度控制等。对于特殊类型的同步电机,如永磁和变磁阻电机,可以获得磁场定向控制等特殊情况,但永磁电机的细节超出了本文的范围。该方案已通过大量的仿真和实验室实验进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design, performance of the speed control of a nonlinear variable reluctance motor drive using exact feedback linearization
Synchronous, motor drives are fast becoming an attractive alternative to DC, and induction motor drives, especially in the low speed, high power range. Different types, of control schemes, have been suggested for variable speed AC drives, fed from static power source. Among them, field oriented control employing vector control, strategies has become quite popular in recent near, A disadvantage of the scheme when applied to synchronous motor drives is that the motor always, operates at a lagging, power factor. In this, work. a generalized design strategy is suggested for the speed control loop of an inverter-fed synchronous motor drive, in which, its inherent flexibility to generate the same torque for different combinations of currents, is exploited that can achieve more general types of control. Existing control schemes such as unity power factor control, torque angle control. as well as field-oriented control etc can be obtained as special cases, for special types, of synchronous motor such as permanent magnet and variable reluctance motors, however the details of permanent magnet motor is beyond the scope of this, paper. The scheme has been validated through extensive simulation as well as laboratory experiments.
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