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PI anti-windup speed control of permanent magnet synchronous motor based on feedforward compensation

机译:基于前馈补偿的PI永磁同步电机防饱和调速控制

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This paper designs simulation model of PI anti-windup speed controller based on a simple set-point weighting for the interior permanent-magnet synchronous motor (IPMSM). Firstly, a mathematical model of IPMSM drive system utilized in the simulation is introduced. Also, the maximum torque per ampere (MTPA) control suitable for IPMSM was employed. This controller is simple for implementation in practice and it has advantages over a conventional PI controller. The proposed anti-windup PI controller demonstrates better dynamic step changes response in speed in terms of overshoots, improved settling time, and improved robustness to parameter variations in comparison with conventional PI. The performance of proposed PI anti-windup controller with set-point weighting was compared with the conventional PI.
机译:本文基于内部永磁同步电动机(IPMSM)的简单设定点权重,设计了PI反饱和转速控制器的仿真模型。首先,介绍了用于仿真的IPMSM驱动系统的数学模型。同样,采用了适用于IPMSM的最大每安培转矩(MTPA)控制。该控制器在实践中易于实现,并且比常规PI控制器具有优势。与传统的PI相比,所提出的抗饱和PI控制器在过冲方面表现出更好的动态阶跃变化响应,改善了建立时间,并提高了参数变化的鲁棒性。将所提出的具有设定点权重的PI防饱和控制器的性能与常规PI进行了比较。

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