UNIFORM STABILIZATION OF A COUPLED STRUCTURAL ACOUSTIC SYSTEM BY BOUNDARY DISSIPATION

We consider a coupled PDE system arising in noise reduction problems. In a two dimensional chamber, the acoustic pressure (unwanted noise) is represented by a hyperbolic wave equation. The floor of the chamber is subject to the action of piezo-ceramic patches (smart materials). The goal is to reduce...

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Bibliographic Details
Published inAbstract and Applied Analysis Vol. 1998; no. no. 3-4; pp. 377 - 400
Main Author Camurdan, Mehmet
Format Journal Article
LanguageEnglish
Published Hindawi Limiteds 1998
Hindawi Publishing Corporation
Wiley
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Summary:We consider a coupled PDE system arising in noise reduction problems. In a two dimensional chamber, the acoustic pressure (unwanted noise) is represented by a hyperbolic wave equation. The floor of the chamber is subject to the action of piezo-ceramic patches (smart materials). The goal is to reduce the acoustic pressure by means of the vibrations of the floor which is modelled by a hyperbolic Kirchoff equation. These two hyperbolic equations are coupled by appropriate trace operators. This overall model differs from those previously studied in the literature in that the elastic chamber floor is here more realistically modeled by a hyperbolic Kirchoff equation, rather than by a parabolic Euler-Bernoulli equation with Kelvin-Voight structural damping, as in past literature. Thus, the hyperbolic/parabolic coupled system of past literature is replaced here by a hyperbolic/hyperbolic coupled model. The main result of this paper is a uniform stabilization of the coupled PDE system by a (physically appealing) boundary dissipation.
ISSN:1085-3375
1687-0409
DOI:10.1155/S108533759800061X