An Efficient Direct Torque Control Scheme for Split Phase Induction Motor

A. Khajeh, J. Moghani, M. Shahbazi
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引用次数: 5

Abstract

In this paper, a predictive direct torque control (DTC) scheme for split phase induction machine (SPIM) is established. The induction motor has two sets of stator three-phase windings spatially shifted by 30 electrical degrees. The major drawback of SPIMs is occurrence of extra harmonic currents. Thus in the DTC of SPIMs in addition to control of torque and flux we should consider simultaneously minimizing harmonic components of stator current. Predictive DTC along with optimized SVPWM is used in this paper. Simulation results show that in addition to a good dynamic response, current harmonics in this scheme is significantly reduced.
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一种高效的分相异步电动机直接转矩控制方案
针对分相感应电机(SPIM),提出了一种预测直接转矩控制方案。感应电动机有两组定子三相绕组,空间位移30度。spim的主要缺点是会产生额外的谐波电流。因此,在SPIMs的直接转矩控制和磁链控制中,应同时考虑使定子电流谐波分量最小化。本文采用了预测直接转矩控制和优化的SVPWM。仿真结果表明,该方案除具有良好的动态响应外,还显著降低了电流谐波。
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