|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
Passive acoustic radiation control for a vibrating panel with piezoelectric shunt damping circuit using particle swarm optimization algorithm
Jin-Young Jeon
The Journal of Mechanical Science and Technology, vol. 23, no. 5, pp.1446-1455, 2009
Abstract : This paper presents a new acoustic radiation optimization method for a vibrating panel-like structure with a passive
piezoelectric shunt damping system in order to minimize well-radiating modes generated from the panel. The optimization
method is based on an idea of using the p-version finite element method(p-version FEM), the boundary element
method(BEM), and the particle swarm optimization algorithm(PSOA). Optimum embossment design for the vibrating
panel using the PSOA is first investigated in order to minimize noise radiation over a frequency range of interest. The
optimum embossment design works as a kind of stiffener so that well-radiating natural modes are shifted up with some
degrees. The optimized panel, however, may still require additional damping for attenuating the peak acoustic amplitudes.
A passive shunt damping system is thus employed to additionally damp the well-radiating modes from the optimized
panel. To numerically evaluate the acoustic multiple-mode damping capability by a shunt damping system, the
integrated p-version FEM/BEM for the panel with the shunt damping system is modeled and developed by MATLAB.
Using the PSOA, the optimization technique for the optimal multiple-mode shunt damper is investigated in order to
achieve the optimum damping performance for the well-radiating modes simultaneously. Also, the acoustic damping
performance of the shunt damping circuit in the acoustic environment is demonstrated numerically and experimentally
with respect to the realistically sized panel. The simulated result shows a good agreement with that of the experimental
result.
Keyword : Shunt damping system; P-version FEM; BEM; Sound power level; Particle swarm optimization algorithm |
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
JMST Editorial Office: #702 KSTC New Bldg, 22 7-gil, Teheran-ro, Gangnam-gu, Seoul 06130, Korea
TEL: +82-2-501-3605, E-mail: editorial@j-mst.org |
JMST Production Office: #702 KSTC New Bldg, 22 7-gil, Teheran-ro, Gangnam-gu, Seoul 06130, Korea
TEL: +82-2-501-6056, FAX: +82-2-501-3649, E-mail: editorial@j-mst.org |
|
|
|
|