DocumentCode
2730856
Title
Experimental evaluation of Active Vibration Control of a flexible plate using proportional gain controller
Author
Rahman, T. A Zahidi ; Darus, I.Z.M.
Author_Institution
Dept. of Mech. & Manuf. Eng., Univ. Putra Malaysia (UPM), Serdang, Malaysia
fYear
2011
fDate
25-28 Sept. 2011
Firstpage
382
Lastpage
386
Abstract
Active Vibration Control (AVC) is well known nowadays as an optimum technique in vibration suppression of flexible structures. Due to the complexity of the dynamics system of flexible structures, vibration control process is quite a challenge. In this paper, the vibration control of flexible plate using classical proportional feedback gain controller method is studied, experimentally. The AVC-P controller design is implemented to a full clamped flexible plate system to evaluate its vibration attenuation performance. The system´s dynamic model considering the collocated placement of the sensor and actuator is derived within the LabVIEW environment. The first five frequencies of vibration mode were obtained. The result indicated that the AVC-P controller propose possessed the ability to attenuate vibration of the flexible structure.
Keywords
actuators; computational complexity; feedback; flexible structures; gain control; plates (structures); proportional control; sensor placement; vibration control; virtual instrumentation; AVC-P controller design; LabVIEW environment; active vibration control; actuator placement; classical proportional feedback gain controller; dynamics system complexity; experimental evaluation; flexible plate; flexible structures; sensor placement; vibration suppression; Acceleration; Actuators; Flexible structures; Force; Resonant frequency; Vibration control; Vibrations; Active Vibration Control; Flexible Plate; Piezoelectric Actuator;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Electronics and Applications (ISIEA), 2011 IEEE Symposium on
Conference_Location
Langkawi
Print_ISBN
978-1-4577-1418-4
Type
conf
DOI
10.1109/ISIEA.2011.6108736
Filename
6108736
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