Active vibration optimal control of piezoelectric cantilever beam with uncertainties

Author:

Cui Mingyue12ORCID,Liu Hongzhao1,Jiang Hualong1,Zheng Yangbing1,Wang Xing1,Liu Wei1

Affiliation:

1. College of Mechanical and Electronical Engineering, Nanyang Normal University, Nanyang, Henan, China

2. Key Laboratory of Industrial Internet of Things & Networked Control, Ministry of Education, Chongqing, China

Abstract

Considering the stiffness characteristics of piezoelectric layer, the bending stiffness of piezoelectric cantilever beam is obtained by applying the first-order shear deformation theory. The finite element model of piezoelectric cantilever beam is established by Hamilton variation principle, and the modal superposition method is employed to reduce the order of the finite element model. At the maximum strain point, the sensors/actuators are equipped in pairs. Based on the uncertain dynamic model of piezoelectric cantilever beam, the independent modal space control method based on LQR (linear quadratic regulator) control is employed for the active control of the smart beam structure, and the weighted matrices Q and R are selected according to the energy criterion. The numerical simulations and experiments verify the effectiveness of the proposed finite element model and the active vibration optimal control.

Funder

Natural Science Foundation of Henan Province of China

National Natural Science Foundation of China

Science and Technology Planning Project of Henan Province of China

Publisher

SAGE Publications

Subject

Applied Mathematics,Control and Optimization,Instrumentation

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