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Fractional-order modeling of permanent magnet synchronous motor speed servo system

机译:永磁同步电动机速度伺服系统的分数阶建模

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摘要

A fractional-order modeling approach for a permanent magnet synchronous motor speed servo system is proposed applying a method combining electromagnetic part modeling and mechanical part modeling. Based on the proposed fractional-order model and system identification scheme, system identification experiments are performed on the electromagnetic part and the mechanical part of the permanent magnet synchronous motor speed servo system, respectively. The fractional-order model parameters of these two parts are identified with these experimental results, and the fractional-order model of the permanent magnet synchronous motor speed servo system is integrated from these two parts. Simulations and experiments in open-loop and closed-loop are performed based on the obtained fractional-order model and integer-order model. The advantage of the proposed fractional-order model for the permanent magnet synchronous motor speed servo system is demonstrated by the simulation and experimental results.
机译:提出了一种电磁零件建模与机械零件建模相结合的永磁同步电动机速度伺服系统分数阶建模方法。基于提出的分数阶模型和系统辨识方案,分别对永磁同步电动机速度伺服系统的电磁部分和机械部分进行了系统辨识实验。通过这些实验结果确定了这两部分的分数阶模型参数,并从这两部分中集成了永磁同步电动机速度伺服系统的分数阶模型。基于获得的分数阶模型和整数阶模型,进行了开环和闭环的仿真和实验。仿真和实验结果证明了所提出的分数阶模型在永磁同步电动机速度伺服系统中的优势。

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