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Extension of the Operating Speed for Vector-Controlled Induction Machine Drives in the Overmodulation Range

机译:矢量控制感应电机驱动器在过调制范围内的运行速度扩展

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摘要

This paper proposes a novel current control scheme for vector-controlled induction machine (IM) drives in the overmodulation (OVM) range, with which the voltage utilization of the voltage-source inverter (VSI) can be maximized. In the OVM region, the original voltage reference is modified by changing its magnitude and angle, which causes the motor current to be distorted, resulting in a deterioration of the current control performance. To meet with this situation, the harmonic components in the feedback currents should be eliminated before being input to the PI current controllers. For this, a composite observer is applied to extract the fundamental and harmonic components from the distorted currents, which gives a good performance without a delay and the effect of a fundamental frequency variation. In addition, through a detailed analysis of the response of the PI current controllers in the OVM range, the effectiveness of using the composite observer is demonstrated. Simulation and experimental results for a 3-kW induction motor drive are shown to verify the validity of the proposed method.
机译:本文提出了一种在过调制(OVM)范围内的矢量控制感应电机(IM)驱动器的新型电流控制方案,通过该方案,可以最大限度地利用电压源逆变器(VSI)的电压。在OVM区域中,通过更改原始电压参考的大小和角度来修改原始电压参考,这会导致电动机电流失真,从而导致电流控制性能下降。为了应对这种情况,应先消除反馈电流中的谐波分量,然后再将其输入到PI电流控制器。为此,使用复合观测器从失真电流中提取基波分量和谐波分量,从而提供了良好的性能而没有延迟和基波频率变化的影响。此外,通过对OVM范围内PI电流控制器的响应进行详细分析,证明了使用复合观察器的有效性。给出了3kW感应电动机驱动器的仿真和实验结果,以验证所提出方法的有效性。

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