Piezoelectric Beam Finite Element Model and Its Reduction and Control

Author:

Vladimír Kutiš1,Juraj Paulech1,Gálik Gálik1,Justín Murín1

Affiliation:

1. Slovak University of Technology in Bratislava, Faculty of Electrical Engineering and Information Technology , Institute of Automotive Mechatronics , Ilkovičova 3, 812 19 Bratislava , Slovakia

Abstract

Abstract The paper deals with the development of the finite element method (FEM) model of piezoelectric beam elements, where the piezoelectric layers are located on the outer surfaces of the beam core, which is made of functionally graded material. The created FEM model of piezoelectric beam structure is reduced using the modal truncation method, which is one of model order reduction (MOR) method. The results obtain from reduced state-space model are compared with results obtain from finite element model. MOR state-space model is also used in the design of the linear quadratic regulator (LQR). Created reduced state-space model with feedback with the LQR controller is analysed and compared with the results from FEM model.

Publisher

Walter de Gruyter GmbH

Subject

Mechanical Engineering

Reference15 articles.

1. [1] Bolton, W. “Mechatronics, Electronic Control Systems in Mechanical and Electrical Engineering”, 6th edition, Pearson, 2015. ISBN: 9781292076683

2. [2] Schwartz, M. “Encyclopedia of Smart Materials”, John Wiley & Sons, Inc., 1st edition, 2002. ISBN: 0471177806.

3. [3] Arnau, A. “Piezoelectric Transducers and Applications”, Springer, 2nd edition. 2008. ISBN: 9783540775072

4. [4] Dorf, R. C., Bishop, R. H. “Modern Control Systems”, Pearson, 13th edition. 2016. ISBN: 0134407628

5. [5] Burnett, D.S. “Finite Element Analysis: From Concepts to Applications”, Addison Wesley Publishing Company, 1st edition, 1987. ASIN: B01FIWOG9A

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