DocumentCode :
1521287
Title :
Modeling and Waveform Optimization of a Nano-motion Piezo Stage
Author :
Merry, R.J.E. ; Maassen, M.G.J.M. ; van de Molengraft, M.J.G. ; van de Wouw, N. ; Steinbuch, M.
Author_Institution :
Dept. of Mech. Eng., Eindhoven Univ. of Technol., Eindhoven, Netherlands
Volume :
16
Issue :
4
fYear :
2011
Firstpage :
615
Lastpage :
626
Abstract :
Piezo actuators are used in high-precision systems that require nanometer accuracy. In this paper, we consider a nano-motion stage driven by a walking piezo actuator, which contains four bimorph piezo legs. We propose a (model-based) optimization method to derive waveforms that result in optimal driving properties of the walking piezo motor. A model of the stage and motor is developed incorporating the switching behavior of the drive legs, the contact deformation, and stick-slip effects between the legs and the stage. The friction-based driving principle of the motor is modeled using a set-valued friction model, resulting in a model in terms of differential-algebraic inclusions. For this model, we developed a dedicated numerical time-stepping solver. Experiments show a good model accuracy in both the drive direction and the perpendicular direction. The validated model is used in an optimization, resulting in waveforms with optimal driving properties of the stage at constant velocity. Besides the model-based optimization, also a direct experimental data-based waveform optimization is performed. Experiments with the optimized waveforms show that compared to existing sinusoidal and asymmetric waveforms in literature the driving properties can be significantly improved by the model-based waveforms and even further by the data-based waveforms.
Keywords :
differential algebraic equations; legged locomotion; optimisation; piezoelectric actuators; piezoelectric motors; stick-slip; bimorph piezo legs; data based waveform optimization; differential algebraic inclusions; high precision system; model based optimization; nanometer accuracy; nanomotion piezo stage; numerical time stepping solver; set-valued friction model; stick slip effect; walking piezo actuator; Actuators; Deformable models; Friction; Hysteresis motors; Leg; Legged locomotion; Mechanical engineering; Micromotors; Optimization methods; Reproducibility of results; Dynamical modeling; input optimization; non-smooth dynamics; piezo actuators;
fLanguage :
English
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
Publisher :
ieee
ISSN :
1083-4435
Type :
jour
DOI :
10.1109/TMECH.2010.2050209
Filename :
5491177
Link To Document :
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