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STUDY ON DIRECT TORQUE CONTROL OF PERMANENT MAGNET SYNCHRONOUS MOTOR BASED ON OBSERVING STATOR FLUX LINKAGE

机译:基于观察定子通量连杆的永磁同步电动机直接扭矩控制研究

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A direct torque control (DTC) strategy based on observing stator flux linkage for permanent magnet synchronous motor (PMSM) was investigated. Traditional DTC can adjust the torque and flux linkage just with only 8 basic voltage space vectors. It has rapid dynamic response, but, it also has the shortcomings: ripple of torque and current, variable switching frequency, and poor performance while low speed. Therefore, a PI controller was used instead of the hysteresis controller and switching table in traditional DTC. The voltage space vector prognosticated by the error of torque for compensating the error of flux linkage is deduced. With space vector modulation (SVM), the error between the estimated and the referenced of stator flux linkage and torque will be accurately compensated by the synthesized voltage space vector. The simulations and experiments verified that compared to DTC of PMSM, DTC-SVM is capable of keeping the excellent dynamic response, also evidently reducing the torque ripple and effectively improving the steady state performance.
机译:研究了基于观察定子通量连杆的直接扭矩控制(DTC)策略进行永磁同步电动机(PMSM)。传统的DTC可以仅使用8个基本电压空间向量调节扭矩和磁通连杆。它具有快速的动态响应,但是,它还具有缺点:扭矩和电流,可变开关频率的纹波,性能差而低速。因此,使用PI控制器代替传统DTC中的滞后控制器和切换表。推导出通过用于补偿磁通连杆误差的扭矩误差预测的电压空间矢量。利用空间矢量调制(SVM),通过合成的电压空间向量将精确地补偿估计和定子通量连杆和扭矩之间的误差。验证的模拟和实验与PMSM的DTC相比,DTC-SVM能够保持出色的动态响应,也显然减小了扭矩脉动并有效地提高了稳态性能。

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