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Direct Torque and Flux Regulation of an IPM Synchronous Motor Drive Using Variable Structure Control Approach

机译:使用变结构控制方法的IPM同步电机驱动器的直接转矩和磁通调节

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摘要

To enhance high performance of an interior permanent magnet synchronous motor drive, a nonlinear variable structure controller is proposed for the control of torque and stator flux linkage. The modeling and experimental results show that the torque and flux ripples have been significantly minimized. The fast responses and robustness merits of the classic direct torque control are preserved by eliminating hysteresis and the existing proportional-integral controllers of torque and flux. By replacing the open-loop flux and torque estimator with a closed-loop observer, the drive system has achieved high performance at very low speed, down to 10 rpm (0.33 Hz) with half full load.
机译:为了提高内部永磁同步电动机驱动器的高性能,提出了一种用于控制转矩和定子磁链的非线性可变结构控制器。建模和实验结果表明,转矩和磁通纹波已大大降低。经典的直接转矩控制的快速响应和鲁棒性优点通过消除磁滞和现有的转矩和磁通比例积分控制器得以保留。通过用闭环观测器代替开环磁通和转矩估算器,驱动系统在极低的速度(半满负载下低至10 rpm(0.33 Hz))下实现了高性能。

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