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Stable Adaptive Fuzzy Control with Hysteresis Observer for Three-Axis Micro/Nano Motion Stages

机译:具有滞后观测器的三轴微/纳米运动平台稳定自适应模糊控制

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This paper considers the analytical dynamics with simplified Dahl hysteresis model for a three-axis piezoactuated microano flexure stage. An adaptive controller with nonlinear dynamic hysteresis observer is proposed using Lyapunov stability theory. In the controller, a fuzzy function approximator with parameters update law is included to compensate for the identification inaccuracy, model uncertainty, and flexure coupling effects. Simulation results are used to demonstrate the control performance.
机译:本文考虑了简化的达尔滞后模型对三轴压电微/纳米挠性位移台的分析动力学。利用李雅普诺夫稳定性理论,提出了一种具有非线性动态磁滞观测器的自适应控制器。在控制器中,包括具有参数更新定律的模糊函数逼近器,以补偿识别不准确,模型不确定性和挠曲耦合效应。仿真结果用于证明控制性能。

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