自适应全阶观测器稳定性对参数辨识误差的依赖

Mateusz Korzonek, T. Orłowska-Kowalska
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引用次数: 1

摘要

本文研究了著名的全阶自适应观测器在电机参数不匹配情况下,用于异步电机驱动在运动和再生模式下的速度估计的稳定性分析。利用改进的再生模式自适应算法,讨论了定子、转子电阻和磁化电感的辨识误差对估计器不稳定工作点区域的影响。给出了在参数不确定情况下,由定子电流误差与转子磁链矢量之间的位移角修改速度自适应律的观测器,并讨论了其稳定区域和转矩-转速特性的变化。给出了仿真和实验结果,验证了理论分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dependence of the adaptive full-order observer stability on parameter identification errors
This paper deals with the stability analysis of the well-known Adaptive Full-Order Observer for the speed estimation of induction motor drive in a motoring and regenerating mode, under motor parameter mismatch. The influence of the identification errors of the stator and rotor resistance and magnetizing inductance on unstable operating points regions of the estimator with the modified adaptation algorithm for the regenerating mode are discussed. The changes of stability regions and torque-speed characteristics of the drive under parameter uncertainties are shown and discussed in the paper for the observer with the speed adaptation law modified by the shift angle between the stator current error and rotor flux vectors. Simulation and experimental results confirming the theoretical analysis are presented.
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