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Modelling and Vibration Control of Planar Systems by the use of Piezoelectric Actuators

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Języki publikacji
EN
Abstrakty
EN
In recent years, a great deal of work has been done on the development of control methodologies for structural and acoustic applications by using piezoelectric actuators. This paper presents the derivation of the models for planar structures with surface-mounted piezoelectric actuators. In the first approach, a parametric system identification procedure is employed to establish a mathematical model of the considered system, on the basis of the data collected from the measurements. The second approach consist in modelling of the fluid-acoustic-structural dynamics in the form of the partial differential equations, derived from physical principles such as forces and moments balance. Assuming axially symmetrical vibrations, on the basis of the models derived, the control algorithm has been developed for the circular plate to which centrally placed PZT actuators were bonded. The results of performed simulations are included and discussed.
Rocznik
Strony
507--519
Opis fizyczny
Bibliogr. 11 poz., wykr.
Twórcy
autor
Bibliografia
  • [1] Fuller C.R., Elliott S.J., Nelson P.A., Active Control of Vibration, Academic Press, London 1996.
  • [2] Hansen C., Snyder S., Active control of noise and vibration, E&FN Spon, London 1997.
  • [3] Leniowska L., Vibrations of circular plate interacting with an ideal compressible fluid, Archives of Acoustics, 24, 4, 427-441 (1999).
  • [4] Leniowska L., Modelling and control of structure-acoustic interaction problems via piezoceramic actuators, Mechanics, 24, 2005.
  • [5] Leniowska L., Active vibration control of a circular plate, Pub. Office of UR, Rzeszów 2006.
  • [6] Leniowska L., Influence of damping and fluid loading on the plate vibration control, Archives of Acoustics, 33, 4, 531-540 (2008).
  • [7] Leniowska L., Kos P., Adaptive predictive feedback control of circular plate vibration, Proceedings of European Conference on Noise Control, EURONOISE 2008, pp. 4633-4638, Paris 2008.
  • [8] Leniowska L., Kos P., Self-tuning control of circular plate for vibration cancellation, Archives of Acoustics, 34, 4, 613-624 (2009).
  • [9] Ljung L., System identification: Theory for the User, Prentice-Hall Int., London 1999.
  • [10] Meirovitch L., Introduction to Dynamics and Control, John Wiley & Sons, 1995.
  • [11] Safonov M.G., Chiang R.Y., A Schur Method for Balanced Model Reduction, IEEE Trans. on Automat. Contr., 34, 7, 729-733 (1989).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS8-0019-0022
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