DocumentCode
2942428
Title
Nonlinear Performance Limits for High Energy Density Piezoelectric Bending Actuators
Author
Wood, Robert J. ; Steltz, Erik ; Fearing, Ronald S.
Author_Institution
Department of Electrical Engineering and Computer Science University of California at Berkeley Berkeley, California, USA; rjwood@eecs.berkeley.edu
fYear
2005
fDate
18-22 April 2005
Firstpage
3633
Lastpage
3640
Abstract
To keep pace with recent advances in micro robotic structures demands actuator technologies which can deliver high power and precise motion. For electroactive material based actuators, high power typically implies either high field or high current drives which may lead to greater nonlinearities such as saturation, softening, and increased loss. Physical modeling of actuators is normally taken to be linear since the range of displacements, applied loads, and applied fields is typically small. If extrapolated to high drive conditions, these linear models significantly over predict the power which can be delivered. For actuators driving dynamic systems, a complete nonlinear model of the system will improve controllability and give more accurate estimations of power delivery capabilities. Here static nonlinearities and dynamic linear and nonlinear parameters are derived for high performance piezoelectric bending actuators.
Keywords
creep; microactuators; nonlinear modeling; piezoelectric actuators; saturation; Capacitive sensors; Creep; Hydraulic actuators; Nonlinear dynamical systems; Piezoelectric actuators; Piezoelectric materials; Power system dynamics; Power system modeling; Softening; Vehicle dynamics; creep; microactuators; nonlinear modeling; piezoelectric actuators; saturation;
fLanguage
English
Publisher
ieee
Conference_Titel
Robotics and Automation, 2005. ICRA 2005. Proceedings of the 2005 IEEE International Conference on
Print_ISBN
0-7803-8914-X
Type
conf
DOI
10.1109/ROBOT.2005.1570673
Filename
1570673
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