Direct torque control of induction motor-variable switching sectors

C. Mei, S. Panda, J. Xu, K. Lim
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引用次数: 78

Abstract

An induction motor drive based on direct torque control (DTC) allows high dynamic performance to be obtained with a very simple hysteresis control scheme. In this paper, the problem of stator flux drooping at low speeds has been investigated. By rotating the original flux sectors defined for conventional DTC near the sector boundaries, it is possible to maintain stator flux within the prescribed hysteresis bands and therefore improve the stator flux in the machine as well as the harmonic contents of stator currents. Moreover, the use of the proposed scheme also results in a reduction of overall inverter switching frequency. The effectiveness of the proposed scheme is evaluated through simulation studies, and is also supported with experimental results obtained from a 1.5 kW induction motor driven in a laboratory environment.
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感应电动机可变开关扇区的直接转矩控制
基于直接转矩控制(DTC)的感应电机驱动可以通过非常简单的磁滞控制方案获得高动态性能。本文研究了定子磁链在低速下的下垂问题。通过在扇区边界附近旋转为传统DTC定义的原始磁通扇区,可以将定子磁通保持在规定的磁滞带内,从而提高机器中的定子磁通以及定子电流的谐波含量。此外,使用该方案还可以降低逆变器的整体开关频率。通过仿真研究评估了所提出方案的有效性,并在实验室环境中获得了1.5 kW感应电动机的实验结果。
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