Low-speed performance of the stator current-based MRAS estimator with FL controller in the sensorless induction motor drive

M. Dybkowski, T. Orłowska-Kowalska
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引用次数: 8

Abstract

In the paper the dynamical performance and sensitivity to the motor parameter changes of the sensorless induction motor drive with MRAS type speed and flux estimator is demonstrated. The stability analysis of the stator current-based MRASCC estimator of the induction motor is presented. The influence of equivalent circuit parameter changes of the induction motor as well as coefficients of the adaptation algorithm of the MRASCC estimator to the pole placement of the estimator transfer function and stability of the whole drive system is analysed and tested. The classical PI controller in speed adaptation algorithm of the MRASCC estimator is changed by the nonlinear, fuzzy logic controller, resulting in the MRASCCFL. The allowable range of motor parameter changes, which guarantees the stable operation of the sensorless field oriented drive system with this MRASCCFL estimator is determined and compared with the MRASCC solution.
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无传感器感应电机驱动中基于定子电流的FL控制器MRAS估计器的低速性能
本文论证了采用MRAS型速度磁链估计器的无传感器感应电机驱动的动态性能及其对电机参数变化的灵敏度。对基于定子电流的异步电动机MRASCC估计器进行了稳定性分析。分析和测试了感应电机等效电路参数的变化以及MRASCC估计器自适应算法的系数对估计器传递函数的极点位置和整个驱动系统稳定性的影响。在MRASCC估计器的速度自适应算法中,经典的PI控制器被非线性模糊控制器所取代,从而产生了MRASCCFL。确定了保证无传感器磁场定向驱动系统稳定运行的电机参数变化的允许范围,并与MRASCC方案进行了比较。
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