Title :
Active vibration control of flexible steel cantilever beam using piezoelectric actuators
Author_Institution :
Dept. of Mech. Eng., Akron Univ., USA
Abstract :
Considerable attention has been devoted recently to active vibration control using intelligent materials as actuators. This paper presents results on active control schemes for vibration suppression of flexible steel cantilever beam with bonded piezoelectric actuators. The PZT patches are surface bonded near the fixed end of flexible steel cantilever beam. The dynamic model of the flexible steel cantilever beam is derived. Active vibration control methods, such as optimized parameter PID compensator, strain rate feedback control are investigated and implemented using xPC target real-time system. Experimental results demonstrate that the proposed methods achieve effective vibration suppression results of steel cantilever beam.
Keywords :
beams (structures); feedback; flexible structures; intelligent materials; piezoelectric actuators; steel; strain control; three-term control; vibration control; PID control; active vibration control; flexible steel cantilever beam; intelligent materials; piezoelectric actuators; strain rate feedback control; Bonding; Intelligent actuators; Intelligent control; Optimization methods; Piezoelectric actuators; Steel; Strain control; Structural beams; Three-term control; Vibration control;
Conference_Titel :
System Theory, 2005. SSST '05. Proceedings of the Thirty-Seventh Southeastern Symposium on
Print_ISBN :
0-7803-8808-9
DOI :
10.1109/SSST.2005.1460873