Title :
Optimal Position of Piezoelectric Elements in Flexible Structures Active Vibration Control
Author :
Zhang, Jingjun ; He, Lili ; Wang, Ercheng ; Gao, Ruizhen
Author_Institution :
Dept. of Sci. Res., Hebei Univ. of Eng., Handan
Abstract :
Based on the linear quadratic Gauss (LQG) optimal control method, the paper introduces an effective procedure to suppress the vibration of flexible structures with the sensors/actuators are symmetrically collocated on both sides of the same position on the host structure. The model of a piezoelectric intelligent cantilever beam is built by the application of ANSYS software. The D-optimal design principle is adopted which is an optimal method which chosen by the maximum determinant of Fisher information matrix as the criteria function. Studies on the modes shapes and dynamic characteristics of the structure, and converts the selected modes into a unitary form by a simple method, the optimal position of the piezoelectric elements can be confirmed by the mode shapes of the structures. Finally, the paper takes a piezoelectric cantilever beam as an example and gives the step response of the system, the results show the effectiveness of this method.
Keywords :
beams (structures); cantilevers; flexible structures; intelligent control; linear quadratic Gaussian control; matrix algebra; piezoelectric actuators; piezoelectric transducers; statistical analysis; structural engineering computing; vibration control; ANSYS software; D-optimal design principle; Fisher information matrix; LQG; active vibration control; flexible structure; linear quadratic Gauss optimal control; piezoelectric actuator; piezoelectric element; piezoelectric intelligent cantilever beam; piezoelectric sensor; vibration suppression; Application software; Flexible structures; Gaussian processes; Hydraulic actuators; Intelligent actuators; Intelligent sensors; Optimal control; Shape; Structural beams; Vibration control; ANSYS software. iita969-smart structures; D-optimal design principle; IF-THEN rules; LQG optimal control; active vibration; fuzzy logic; fuzzy logic controller (FLC); intelligent structures; piezoelectric materials;
Conference_Titel :
Intelligent Information Technology Application, 2008. IITA '08. Second International Symposium on
Conference_Location :
Shanghai
Print_ISBN :
978-0-7695-3497-8
DOI :
10.1109/IITA.2008.583