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Design of flux-weakening control system of PMSM based on the fuzzy self-tuning PID controller

机译:基于模糊自调整PID控制器的永磁同步电机弱磁通控制系统设计。

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A Fuzzy-PID Controller for the compensation of the Direct-axis current component in the flux-weakening control system of the Permanent Magnet Synchronous Motor (PMSM) is proposed in this paper. The output torque of PMSM falls down when it operates in the high-speed as the reason of its parameters variation. In order to minimize the influences from the armature reaction, the quadrature-axis current reference component and its deviation with the detection value are chose as the inputs of the Fuzzy-PID controller, and output of the Direct-axis compensation value is obtained as the setting value of the current regulator. The proposed control method is implemented in the experimental platform based on TI DSP chip, the experiment results demonstrate that the strategy adopted in this paper can improve the performance of torque effectively.
机译:提出了一种永磁同步电动机(PMSM)弱磁控制系统中直流轴电流分量的补偿模糊控制器。 PMSM高速运行时,由于其参数变化,其输出转矩会下降。为了最小化电枢反作用的影响,选择正交轴电流参考分量及其与检测值的偏差作为Fuzzy-PID控制器的输入,并获得直接轴补偿值的输出作为Fuzzy-PID控制器的输入。电流调节器的设定值。在基于TI DSP芯片的实验平台上实现了所提出的控制方法,实验结果表明本文所采用的策略可以有效提高转矩性能。

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