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Torque-Angle-Based Direct Torque Control for Interior Permanent-Magnet Synchronous Motor Drivers in Electric Vehicles

机译:电动汽车内部永磁同步电动机驱动器基于转矩角度的直接转矩控制

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摘要

A modified direct torque control (DTC) method based on torque angle is proposed for interior permanent-magnet synchronous motor (IPMSM) drivers used in electric vehicles (EVs). Given the close relationship between torque and torque angle, proper voltage vectors are selected by the proposed DTC method to change the torque angle rapidly and regulate the torque quickly. The amplitude and angle of the voltage vectors are determined by the torque loop and stator flux-linkage loop, respectively, with the help of the position of the stator flux linkage. Furthermore, to satisfy the torque performance request of EVs, the nonlinear dead-time of the invertor caused by parasitic capacitances is considered and compensated to improve steady torque performance. The stable operation region of the IPMSM DTC driver for voltage and current limits is investigated for reliability. The experimental results prove that the proposed DTC has good torque performance with a brief control structure.
机译:提出了一种基于转矩角的改进的直接转矩控制(DTC)方法,用于电动汽车(EV)的内部永磁同步电动机(IPMSM)驱动器。给定转矩和转矩角之间的紧密关系,通过提出的DTC方法选择适当的电压矢量,以快速改变转矩角并快速调节转矩。电压矢量的幅值和角度分别由转矩环和定子磁链环在定子磁链的位置帮助下确定。此外,为了满足电动汽车的扭矩性能要求,考虑并补偿了由寄生电容引起的逆变器的非线性死区时间,并对其进行了补偿,以提高稳定的扭矩性能。研究了IPMSM DTC驱动器针对电压和电流限制的稳定工作区域的可靠性。实验结果证明,提出的故障诊断代码具有良好的转矩性能,控制结构简单。

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