Paper
10 July 2002 Finite element models applied in active structural acoustic control
Marco H. H. Oude Nijhuis, Andre de Boer
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Abstract
This paper discusses the modeling of systems for active structural acoustic control. The finite element method is applied to model structures including the dynamics of piezoelectric sensors and actuators. A model reduction technique is presented to make the finite element model suitable for controller design. The reduced structural model is combined with an acoustic model which uses the radiation mode concept. For a test case consisting of a rectangular plate with one piezo patch the model reduction technique is validated. The results show that the an accurate prediction of both the structural and acoustic response is predicted by the reduced model. The model is compact requiring small simulation times, which makes it attractive for control system design. Finally the control performances for both structural and acoustic error criteria are presented.
© (2002) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Marco H. H. Oude Nijhuis and Andre de Boer "Finite element models applied in active structural acoustic control", Proc. SPIE 4693, Smart Structures and Materials 2002: Modeling, Signal Processing, and Control, (10 July 2002); https://doi.org/10.1117/12.475252
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CITATIONS
Cited by 5 scholarly publications.
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KEYWORDS
Acoustics

Sensors

Finite element methods

Systems modeling

Actuators

Control systems

Matrices

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