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Minimization of Steady-State Torque Tracking Error in Direct-Torque Controlled PM Brushless AC Drives

机译:最小化直接控制PM无刷交流驱动器中的稳态扭矩跟踪误差

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In conventional direct-torque controlled permanent-magnet brushless AC motor drives, the stator flux- linkage and electromagnetic torque are regulated using hysteresis controllers. Unlike the analog counterpart, a digital hysteresis controller operates at fixed sampling period and no control action can be taken between any two sampling instants. Consequently, the controlled variable in a discrete time hysteresis controller may exceed the predefined hysteresis band limits. When the conventional direct torque control scheme is employed, the stator flux-linkage and torque feedbacks are found to exceed the hysteresis band limits. Although the feedback stator flux- linkage goes beyond the band limits, its average tracks the commanded value relatively well. However, due to a significant difference between the rising and falling rates of the feedback electromagnetic torque, a steady-state torque tracking error is resulted. The steady-state torque tracking error can be minimized by employing an improved torque regulator with asymmetric hysteresis band limits.
机译:在传统的直接扭矩控制的永磁无刷AC电动机驱动器中,定子磁通连接和电磁扭矩使用滞后控制器调节。与模拟对应物不同,数字滞后控制器在固定采样周期下运行,并且在任何两个采样时刻都无法采取控制操作。因此,离散时间滞后控制器中的受控变量可以超过预定义的滞后带限制。当采用传统的直接扭矩控制方案时,发现定子磁通连杆和扭矩反馈超过滞后带限制。虽然反馈定子磁通磁通量超出了频段限制,但其平均值相对良好地跟踪命令值。然而,由于反馈电磁扭矩的上升和下降率之间的显着差异,导致稳态扭矩跟踪误差。通过采用具有不对称滞后带限制的改进的扭矩调节器,可以最小化稳态扭矩跟踪误差。

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