Constructive Proof of Preisach Right Inverse With Applications to Inverse Compensation of Smart Actuators With Hysteresis

Author:

Dong Yangyang1,Hu Hong1,Zhang Zijian2

Affiliation:

1. Department of Mechanical Engineering, D403H, Harbin Institute of Technology, Shenzhen Graduate School, Shenzhen 518055, China e-mail:

2. State Key Laboratory of Robotics and Systems, Harbin Institute of Technology, Harbin 150001, China e-mail:

Abstract

Hysteresis poses a significant challenge for control of smart material actuators. If unaccommodated, the hysteresis can result in oscillation, poor tracking performance, and potential instability when the actuators are incorporated in control design. To overcome these problems, a fundamental idea in coping with hysteresis is inverse compensation based on the Preisach model. In this paper, we address systematically the problem of Preisach model inversion and its properties, employing the technique of three-step composition mapping and geometric interpretation of the Preisach model. A Preisach right inverse is achieved via the iterative algorithm proposed, which possesses same properties with the Preisach model. Finally, comparative experiments are performed on a piezoelectric stack actuator (PEA) to test the efficacy of the compensation scheme based on the Preisach right inverse.

Publisher

ASME International

Subject

Computer Science Applications,Mechanical Engineering,Instrumentation,Information Systems,Control and Systems Engineering

Reference19 articles.

1. Tracking Control of a Piezoceramic Actuator;IEEE Trans. Control Syst. Technol.,1996

2. Preisach Modeling of Piezoceramic and Shape Memory Alloy Hysteresis;Smart Mater. Struct.,1997

3. Venkataraman, R., 1999, “Modeling and Adaptive Control of Magnetostrictive Actuators,” Ph.D. thesis, College Park, MD, http://drum.lib.umd.edu/handle/1903/6043

4. Optimal Design, Fabrication, and Control of an XY Micropositioning Stage Driven by Electromagnetic Actuators;IEEE Trans. Ind. Electron.,2013

5. Direct and Inverse Preisach Modeling of Soft Materials;IEEE Trans. Magn.,2000

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