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Stability Analysis of Sensorless IM Based on Adaptive Feedback Linearization Control with Unknown Stator and Rotor Resistances

机译:基于自适应反馈线性化控制的无传感器IM与未知定子和转子电阻的稳定性分析

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In this paper, stability analysis of a sensorless induction motor drive based on adaptive feedback linearization control is presented, while mismatch in both rotor and stator resistances are taken into account. A Lyapunov function, based on observer and controller dynamics, and using airgap flux model, is proposed. Theoretical analysis along with experimental results show that stator and rotor resistances converge to actual values, if the appropriate adaptation laws are designed, and persistant excitation (PE) condition is satisfied. Furthermore; flux, torque, and rotor speed are estimated and controlled successfully.
机译:本文提出了一种基于自适应反馈线性化控制的无传感器感应电动机驱动的稳定性分析,同时考虑转子和定子电阻中的不匹配。提出了一种基于观察者和控制器动态的Lyapunov函数,并采用AirGAP通量模型。理论分析以及实验结果表明,如果设计了适当的适应规律,则定子和转子电阻会聚到实际值,并且满足持久的激励(PE)条件。此外;云,扭矩和转子速度成功估算和控制。

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