DocumentCode
773433
Title
Feedforward Controller With Inverse Rate-Dependent Model for Piezoelectric Actuators in Trajectory-Tracking Applications
Author
Ang, Wei Tech ; Khosla, Pradeep K. ; Riviere, Cameron N.
Author_Institution
Sch. of Mech. & Aerosp. Eng, Nanyang Technol. Univ., Singapore
Volume
12
Issue
2
fYear
2007
fDate
4/1/2007 12:00:00 AM
Firstpage
134
Lastpage
142
Abstract
Effective employment of piezoelectric actuators in microscale dynamic trajectory-tracking applications is limited by two factors: 1) the intrinsic hysteretic behavior of piezoelectric ceramic and 2) structural vibration as a result of the actuator´s own mass, stiffness, and damping properties. While hysteresis is rate-independent, structural vibration increases as the piezoelectric actuator is driven closer to its resonant frequency. Instead of separately modeling the two interacting dynamic effects, this work treats their combined effect phenomenologically and proposes a rate-dependent modified Prandtl-Ishlinskii operator to account for the hysteretic nonlinearity of a piezoelectric actuator at varying actuation frequency. It is shown experimentally that the relationship between the slope of the hysteretic loading curve and the rate of control input can be modeled by a linear function up to a driving frequency of 40 Hz
Keywords
control nonlinearities; feedforward; hysteresis; piezoceramics; piezoelectric actuators; position control; vibration control; feedforward control; hysteresis; hysteretic nonlinearity; inverse rate-dependent model; piezoelectric actuators; piezoelectric ceramic; structural vibration; trajectory-tracking; Aerodynamics; Capacitive sensors; Displacement control; Employment; Frequency; Hysteresis; Inverse problems; Piezoelectric actuators; Piezoelectric materials; Vibrations; Feedforward controller; hysteresis modeling; piezoelectric actuators;
fLanguage
English
Journal_Title
Mechatronics, IEEE/ASME Transactions on
Publisher
ieee
ISSN
1083-4435
Type
jour
DOI
10.1109/TMECH.2007.892824
Filename
4154698
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