Sensorless Control of PMSM Based on FOC Strategy and Fractional Order PI Controller

M. Nicola, C. Nicola, M. Duta
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引用次数: 2

Abstract

In this article is presented a sensorless control system for a Permanent Magnet Synchronous Motor (PMSM) based on the Field Oriented Control (FOC) strategy using the Model Reference Adaptive System (MRAS) observer for rotor position and speed estimation. The controller of the outer speed control loop in the FOC structure is replaced by fractional PID $(PI^{\lambda}D^{\mu})$ and Tilt Integral Derivative (TID) controllers. The transfer functions of these two controllers were synthesized through the Fractional Order Modeling and Control (FOMCON) toolbox for MATLAB, for the implementation in the PMSM real-time control system. The numerical simulations presents the superiority of the speed Fractional Order-PI (FO-PI) controller and speed TID controller against the speed PI controller; this superiority can be explained by the fact that they have a supplementary number of tuning parameters than the speed PI controller, and their mathematical model is more accurate due to the use of the fractional calculus.
基于FOC策略和分数阶PI控制器的永磁同步电机无传感器控制
本文提出了一种基于磁场定向控制(FOC)策略的永磁同步电机无传感器控制系统,该系统采用模型参考自适应系统(MRAS)观测器对转子位置和速度进行估计。采用分数阶PID $(PI^{\lambda}D^{\mu})$和倾斜积分导数(TID)控制器代替FOC结构中外转速控制环的控制器。通过MATLAB的分数阶建模与控制(FOMCON)工具箱综合了这两种控制器的传递函数,并在永磁同步电机实时控制系统中实现。数值仿真表明,速度分数阶PI (FO-PI)控制器和速度TID控制器相对于速度PI控制器具有优越性;这种优势可以用以下事实来解释:它们比速度PI控制器有更多的调谐参数,并且由于使用分数微积分,它们的数学模型更准确。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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