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Design and Implementation of Adaptive Fuzzy Cerebellar Model Articulation Controller for Direct Torque Control System

机译:直接扭矩控制系统自适应模糊小脑模型关节控制器的设计与实现

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This study implemented fuzzy control theory with a cerebellar controller to design a fuzzy cerebellar model articulation controller (FCMAC), ensuring system stability by deriving an adaptive FCMAC weight update rule from the Lyapunov theory. The speed estimator design in this study is based on the structure of an adaptive stator flux observer (ASFO) to achieve rapid sensorless control. According to results from experiments, installing the adaptive FCMAC speed controller in the induction motor’s direct torque control system demonstrates excellent speed dynamic response.
机译:本研究利用小脑控制器实现了模糊控制理论,以设计模糊的小脑模型关节控制器(FCMAC),通过从Lyapunov理论中获得自适应FCMAC重量更新规则来确保系统稳定性。本研究中的速度估计器设计基于自适应定子通量观测器(ASFO)的结构,以实现快速的无传感器控制。根据实验结果,在感应电机的直接扭矩控制系统中安装自适应FCMAC速度控制器展示了出色的速度动态响应。

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