Boundary Output Feedback Stabilization for a Novel Magnetizable Piezoelectric Beam Model

Fuente: arXiv
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Main Authors: Ozer, Ahmet Ozkan, Rasaq, Uthman, Khalilullah, Ibrahim
Format: Preprint
Published: 2023
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_version_ 1866929273731809280
author Ozer, Ahmet Ozkan
Rasaq, Uthman
Khalilullah, Ibrahim
author_facet Ozer, Ahmet Ozkan
Rasaq, Uthman
Khalilullah, Ibrahim
contents A magnetizable piezoelectric beam model, free at both ends, is considered. Piezoelectric materials have a strong interaction of electromagnetic and acoustic waves, whose wave propagation speeds differ substantially. The corresponding strongly-coupled PDE model describes the longitudinal vibrations and the total charge accumulation at the electrodes of the beam. It is known that the PDE model with appropriately chosen collocated state feedback controllers is known to have exponentially stable solutions. However, the collocated controller design is not always feasible since the performance of controllers may not be good enough, and moreover, a small increment of feedback controller gains can easily make the closed-loop system unstable. Therefore, a non-collocated controller and observer design is considered for the first time for this model. In particular, two state feedback controllers are designed at the right end to recover the states so that the boundary output feedback controllers can be designed as a replacement of the states with the estimate from the observers on the left end. By a carefully-constructed Lyapunov function, it is proved that the both the observer and the observer error dynamics have uniformly exponential stable solutions. This framework offers a substantial foundation for the model reductions by Finite Differences.
format Preprint
id arxiv_https___arxiv_org_abs_2309_13986
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Boundary Output Feedback Stabilization for a Novel Magnetizable Piezoelectric Beam Model
Ozer, Ahmet Ozkan
Rasaq, Uthman
Khalilullah, Ibrahim
Analysis of PDEs
Optimization and Control
93C20, 74F15, 93A30, 35M32, 93D30
A magnetizable piezoelectric beam model, free at both ends, is considered. Piezoelectric materials have a strong interaction of electromagnetic and acoustic waves, whose wave propagation speeds differ substantially. The corresponding strongly-coupled PDE model describes the longitudinal vibrations and the total charge accumulation at the electrodes of the beam. It is known that the PDE model with appropriately chosen collocated state feedback controllers is known to have exponentially stable solutions. However, the collocated controller design is not always feasible since the performance of controllers may not be good enough, and moreover, a small increment of feedback controller gains can easily make the closed-loop system unstable. Therefore, a non-collocated controller and observer design is considered for the first time for this model. In particular, two state feedback controllers are designed at the right end to recover the states so that the boundary output feedback controllers can be designed as a replacement of the states with the estimate from the observers on the left end. By a carefully-constructed Lyapunov function, it is proved that the both the observer and the observer error dynamics have uniformly exponential stable solutions. This framework offers a substantial foundation for the model reductions by Finite Differences.
title Boundary Output Feedback Stabilization for a Novel Magnetizable Piezoelectric Beam Model
topic Analysis of PDEs
Optimization and Control
93C20, 74F15, 93A30, 35M32, 93D30
url https://arxiv.org/abs/2309.13986