Wave characteristics and vibration control of translating beams by optimal boundary damping

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26
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32

초록

The transverse motion of a translating tensioned Euler-Bernoulli beam is controlled by passive or active damping applied at a boundary. Even for an undamped beam with a symmetric boundary configuration, the interaction between the translating continuum and the stationary or moving boundary leads to energy variation in free motion. With the time-varying energy chosen as a Lyapunov functional, boundary control laws are designed based on Lyapunov's second method. For various types of translating beams, energy dissipation by boundary damping is quantified using the method of traveling waves. The optimal value of damping, maximizing the energy dissipation, is also explicitly represented by system parameters. The analytical results are compared with numerical simulations using the finite difference scheme.

키워드

DYNAMICSENERGETICSSPACECRAFTCONTINUAPIPESFLOW
제목
Wave characteristics and vibration control of translating beams by optimal boundary damping
저자
Lee, SYMote, CD
DOI
10.1115/1.2893942
발행일
1999-01
유형
Article
저널명
Journal of Vibration and Acoustics, Transactions of the ASME
121
1
페이지
18 ~ 25