Title :
Active vibration control of a flexible beam based on experimental modal analysis
Author :
Hu, Junfeng ; Zhu, Dachang ; Chen, Qiang ; Gu, Qihua
Author_Institution :
Sch. of Mech. & Electr. Eng., Jiangxi Univ. of Sci. & Technol., Ganzhou, China
Abstract :
The study of algorithms for active vibration control in flexible structures became an area of enormous interest, mainly due to the countless demands of an optimal performance of mechanical systems as aircraft and aerospace structures. Mode theory and linear quadratic state-feedback regulator are applied to suppress the vibration of a flexible link with piezoelectric actuators and strain gage transducer. The state-space dynamic model of the system was derived by using finite element method and experimental modal test. On the basis of the model, a Kalman state estimator is designed taking into account the uncertain disturbance and measurement noise. The disturbance and measurement noise are treated as white noise. A linear quadratic state-feedback regulator is implemented, which minimizes the quadratic performance function that trades off regulation performance and control effort. The experimental results show that the proposed controller can provide good disturbance rejection and can effectively reduce rapidly the strain of the flexible link and elastic vibration response.
Keywords :
aerospace engineering; beams (structures); elasticity; finite element analysis; flexible structures; linear quadratic control; modal analysis; piezoelectric actuators; state estimation; state feedback; structural engineering; uncertain systems; vibration control; Kalman state estimator; active vibration control; aerospace structures; aircraft structures; elastic vibration response; experimental modal analysis; finite element method; flexible beam; flexible structures; linear quadratic state feedback regulator; measurement noise; mechanical systems; optimal performance; piezoelectric actuators; state space dynamic model; strain gage transducer; uncertain disturbance; active vibration control; experimental modal test; finite element method; linear quadratic regulator;
Conference_Titel :
Advanced Computer Control (ICACC), 2011 3rd International Conference on
Conference_Location :
Harbin
Print_ISBN :
978-1-4244-8809-4
Electronic_ISBN :
978-1-4244-8810-0
DOI :
10.1109/ICACC.2011.6016429