A nonlinear disturbance rejection vibration control for an all-clamped piezoelectric panel

Author:

Li Shengquan1,Zhu Chaowei1,Li Juan1,Mao Qibo2

Affiliation:

1. , Yangzhou University, , China

2. , Nanchang HangKong University, , China

Abstract

Considering the internal and external disturbances in actual engineering structure, a composite active vibration control method is proposed for an all-clamped piezoelectric panel. First, the theoretical modal analysis and laser vibrometer are employed to obtain the natural frequency and mode shape of the panel, for reasonable arrangement of actuator and accelerometer. Second, a nonlinear extended state observer is introduced to estimate the total disturbances, i.e., modeling uncertainties, high-order harmonics, coupling and external excitations. Third, the estimated value is used to compensate and attenuate the influence of the total disturbances in real time. In addition, the feedback controller based on the proportional differential and acceleration feedback method is designed to enhance the vibration suppression performance of the whole system. Finally, a semi-physical platform is built in MATLAB/Simulink real-time environment with the NI-PCIe6343 acquisition card to verify the effectiveness and superiority of the proposed method.

Publisher

IOS Press

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

Reference15 articles.

1. A review on modeling techniques of piezoelectric integrated plates and shells;Zhang;Journal of Intelligent Material and Structures,2019

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4. A criterion for optimal sensor placement for minimizing spillover effects on optimal controllers;Khushnood;Journal of Vibration and Control,2018

5. Discrete singular convolution and spectral finite element method for predicting electromechanical impedance applied on rectangular plates;Sepehry;Journal of Intelligent Material and Structures,2017

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