DocumentCode :
3572984
Title :
Modeling and control of a piezoelectric-actuated nano-positioner: An hierarchical composite anti-disturbance control approach
Author :
Tongtong Leng ; Peng Yan ; Lei Guo
Author_Institution :
Key Lab. of High-efficiency & Clean Mech. Manuf., Shandong Univ., Jinan, China
fYear :
2014
Firstpage :
2836
Lastpage :
2841
Abstract :
This paper studies the anti-disturbance control for ultra-high precision positioning of a piezoelectric-actuator driven nano-positioner, subjects to nonlinear dynamics and various external disturbances. In this particular study, the multiple-disturbance is supposed to have two parts. One is the undesired vibration resonance, which could be described by an exogenous dynamical system. The other includes model uncertainties and external random disturbances, which can be considered to have bounded norms. The physical model of the nano-positioning stage is discussed and a composite control law is then presented, where disturbance-observer-based control (DOBC) is formulated for feedforward compensation of the vibrations. Then a composite controller consisting of DOBC and an H controller is developed to achieve the anti-disturbance performance. Finally, simulations and experiments on the nanostage are deployed to demonstrate the anti-disturbance performance by combining DOBC with H control.
Keywords :
H control; compensation; feedforward; nanopositioning; nonlinear control systems; observers; piezoelectric actuators; uncertain systems; vibration control; DOBC; H controller; bounded norms; composite control; composite controller; disturbance-observer-based control; exogenous dynamical system; external random disturbances; feedforward vibration compensation; hierarchical composite antidisturbance control approach; model uncertainties; nonlinear dynamics; physical model; piezoelectric-actuated nanopositioner Control; piezoelectric-actuated nanopositioner modeling; ultrahigh-precision positioning; vibration resonance; Educational institutions; Robustness; Anti-disturbance control; Disturbance-observer-based control; H control; Nano-positioner;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Control and Automation (WCICA), 2014 11th World Congress on
Type :
conf
DOI :
10.1109/WCICA.2014.7053178
Filename :
7053178
Link To Document :
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