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Development of Active Vibration Control System for Circular Plate by Using the 2-Layer Piezo Disk Elements

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
An active vibration control system is proposed for suppressing small amplitude harmonic vibrations of a thin circular plate. This system integrates control algorithms, intelligent materials, hardware and software technologies. The mathematical model of the physical system is based upon the geometry and properties of an experimental set-up consisting of a hard-walled cylinder with a thin aluminium plate at one end. Primary excitation is provided by a Iow frequency loudspeaker installed centrally at the bottom of the cylinder. The vibrations of the plate are measured by the application of strain sensors. Intelligent materials such as 2-layer piezo disk elements (PZT) are used as the actuator. For the considered system, the OE (Output Error) method of discrete-time model identification for real-time active vibration control has been applied. On the basis of this model, the control algorithm based on pole-placement method has been developed. The simulation results show that the designed structure of a close-loop system provifeedback contrdes substantial vibration suppression.
Wydawca
Rocznik
Strony
337--346
Opis fizyczny
Bibliogr. 10 poz., rys.
Twórcy
autor
  • Institute of Technology, University of Rzeszów, Rzeszów, Poland
autor
  • Department of Automatic Control and Computer Science, Technical University of Rzeszów
Bibliografia
  • [1] Dimitriadis E.K., Fuller C.R., Rogers C.A.: Piezoelectric actuators for distributed vibration excitation of thin plates. Trans. ASME J. Vib. Acoust., 113, 1991, 100-107
  • [2] Dorf R.C., Bishop R.H.: Modem Control Systems. Addison Wesley 1997
  • [3] Hansen C., Snyder S.: Active control of noise and vibration. London, E&FN Spon1997
  • [4] Leniowska L.: Vibrations of circular plate interacting with an ideal compressible fluid. Archives of Acoustics, 24,4, 1999,435-449
  • [5] Leniowska L., Leniowski R.: Active vibration control of a circular plate with clamped boundary condition. M&QA Jour., 22, 2001,145-156
  • [6] Leniowska L., Leniowski R.: Active attenuation of sound radiation from circular fluid-loaded plate. Jour, of Acoustic and Vibration, 6, 1,2001, 35-41
  • [7] Ljung L., Glad T.: Modeling of dynamic systems. Englewood Cliffs N.J., Prentice Hall 1994
  • [8] Sodersdrom T., Stoica P.: System Identification. London, Prentice Hall Int. 1989
  • [9] Smits J.G., Dalke S.I., Cooney T.K.: The constituent equation of piezoelectric bimorphs. Sensors and Actuators ,28, 1991,41-61
  • [10] Piezo Systems Inc. Product Catalog
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ4-0002-0041
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