Multiple Voltage Vectors Control Strategy for the Direct Torque Control Using Matrix Converters

Pei Luo, Jian-lin Zhu
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Abstract

The electromagnetic torque ripple is one of the most important drawbacks of the Direct Torque Control for Induction Motors using Matrix Converters at low speed. This paper investigate the use of multiple voltage vectors of Matrix Converters to reduce the electromagnetic torque ripple which appears when Direct Torque Control technique is used in Induction Motors. The standard look up table for Direct Torque Control is improved in order to include the multiple voltage vectors (long voltage vectors, short voltage vectors and zero voltage vectors). A hysteresis comparator with five-level output is proposed to determine the small and large torque errors and consequently the electromagnetic torque ripple is reduced. Finally, the simulation results have verified the feasibilities of this novel control strategy.
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矩阵变换器直接转矩控制的多电压矢量控制策略
电磁转矩脉动是矩阵变换器异步电动机低速直接转矩控制的主要缺陷之一。本文研究了利用矩阵变换器的多个电压矢量来减小直接转矩控制技术在异步电动机中出现的电磁转矩脉动。改进了直接转矩控制的标准查找表,以便包括多个电压矢量(长电压矢量,短电压矢量和零电压矢量)。提出了一种具有五电平输出的磁滞比较器,以确定大小转矩误差,从而减小电磁转矩脉动。最后,仿真结果验证了该控制策略的可行性。
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