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Motion Control of Piezo-Driven Stage Via A Chattering-free Sliding Mode Controller With Hysteresis Compensation
Conference proceeding

Motion Control of Piezo-Driven Stage Via A Chattering-free Sliding Mode Controller With Hysteresis Compensation

Yunfeng Fan, Yichang He, Dingguo Zhang and U-Xuan Tan
2018 IEEE/RSJ INTERNATIONAL CONFERENCE ON INTELLIGENT ROBOTS AND SYSTEMS (IROS), pp.6424-6430
IEEE International Conference on Intelligent Robots and Systems
01/01/2018

Abstract

Computer Science Computer Science, Artificial Intelligence Computer Science, Information Systems Robotics Science & Technology Technology
This paper presents a novel sliding mode controller for trajectory tracking of the piezo-driven stage. The tracking performance of piezoelectric actuator is mainly affected by the hysteresis nonlinearity. Sliding mode control is a possible solution to achieve better tracking performance. However, conventional sliding mode control generates discontinuous control signal which results in chattering. Hence, the hysteresis nonlinearity is first compensated with a hysteresis model, and an uncertainty and disturbance estimator is designed and included to devise a smooth control action. The stability of the proposed method is demonstrated via Lyapunov analysis. Both simulation and experiment are also conducted to verify the effectiveness of the proposed approach. The results are compared with a conventional sliding mode controller and a proportional-integral control with notch filter (PIC-NF).

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