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Dynamic Responses and Fuzzy Control of a Simply Supported Beam Subjected to a Moving Mass  

Kong, Yong-Sik (Hanwha L&C Corp)
Ryu, Bong-Jo (Department of Mechanical Design Engineering, Hanbat National University)
Shin, Kwang-Bok (Department of Mechanical Design Engineering, Hanbat National University)
Lee, Gyu-Seop (Tektree Co. Ltd.,)
Lee, Hong-Gi (RMS Tchnology Co., Ltd.)
Publication Information
Journal of Mechanical Science and Technology / v.20, no.9, 2006 , pp. 1371-1381 More about this Journal
Abstract
This paper deals with the active vibration control of a simply-supported beam traversed by a moving mass using fuzzy control. Governing equations for dynamic responses of a beam under a moving mass are derived by Galerkin's mode summation method, and the effect of forces (gravity force, Coliolis force, inertia force caused by the slope of the beam, transverse inertia force of the beam) due to the moving mass on the dynamic response of a beam is discussed. For the active control of dynamic deflection and vibration of a beam under the moving mass, the controller based on fuzzy logic is used and the experiments are conducted by VCM (voice coil motor) actuator to suppress the vibration of a beam. Through the numerical and experimental studies, the following conclusions were obtained. With increasing mass ratio y at a fixed velocity of the moving mass under the critical velocity, the position of moving mass at the maximum dynamic deflection moves to the right end of the beam. With increasing velocity of the moving mass at a fixed mass ratio ${\gamma}$, the position of moving mass at the maximum dynamic deflection moves to the right end of the beam too. The numerical predictions of dynamic deflection of the beam have a good agreement with the experimental results. With the fuzzy control, more than 50% reductions of dynamic deflection and residual vibration of the tested beam under the moving mass are obtained.
Keywords
Dynamic Responses; Fuzzy Control; Moving Mass; Simply-Supported Beam; Voice Coil Motor;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
Times Cited By Web Of Science : 0  (Related Records In Web of Science)
Times Cited By SCOPUS : 0
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