Output feedback stabilization for multi-dimensional Kirchhoff plate with general corrupted boundary observation

We consider boundary output feedback stabilization for a multi-dimensional Kirchhoff plate with boundary observation suffered from a general external disturbance. We adopt for the first time the active disturbance rejection control approach to stabilization of multi-dimensional partial differential...

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Published inEuropean journal of control Vol. 28; pp. 38 - 48
Main Authors Guo, Bao-Zhu, Zhou, Hua-Cheng
Format Journal Article
LanguageEnglish
Published Philadelphia Elsevier Ltd 01.03.2016
Elsevier Limited
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Online AccessGet full text
ISSN0947-3580
1435-5671
DOI10.1016/j.ejcon.2015.12.004

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Abstract We consider boundary output feedback stabilization for a multi-dimensional Kirchhoff plate with boundary observation suffered from a general external disturbance. We adopt for the first time the active disturbance rejection control approach to stabilization of multi-dimensional partial differential equations under corrupted output feedback. In terms of this approach, the disturbance is estimated by a relatively independent estimator, based on (possibly) an infinite number of ordinary differential equations reduced from the original PDEs by infinitely many time-dependent test functions. This gives a state observer, an additional result via this approach. The disturbance is compensated in the feedback-loop. As a result, the control law can be designed almost as the same as that for the system without disturbance. We show that with a time varying gain properly designed, the observer driven by the disturbance estimator is convergent; and that all subsystems in the closed-loop are asymptotically stable. We also provide numerical simulations which demonstrate the convergence results and underline the effect of the time varying high gain estimator.
AbstractList We consider boundary output feedback stabilization for a multi-dimensional Kirchhoff plate with boundary observation suffered from a general external disturbance. We adopt for the first time the active disturbance rejection control approach to stabilization of multi-dimensional partial differential equations under corrupted output feedback. In terms of this approach, the disturbance is estimated by a relatively independent estimator, based on (possibly) an infinite number of ordinary differential equations reduced from the original PDEs by infinitely many time-dependent test functions. This gives a state observer, an additional result via this approach. The disturbance is compensated in the feedback-loop. As a result, the control law can be designed almost as the same as that for the system without disturbance. We show that with a time varying gain properly designed, the observer driven by the disturbance estimator is convergent; and that all subsystems in the closed-loop are asymptotically stable. We also provide numerical simulations which demonstrate the convergence results and underline the effect of the time varying high gain estimator.
Author Zhou, Hua-Cheng
Guo, Bao-Zhu
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Keywords Boundary control
Disturbance rejection
Stabilization
Kirchhoff plate
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Snippet We consider boundary output feedback stabilization for a multi-dimensional Kirchhoff plate with boundary observation suffered from a general external...
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SubjectTerms Boundary control
Closed loop systems
Disturbance rejection
Feedback control systems
Kirchhoff plate
Mathematical models
Partial differential equations
Stabilization
Vibration analysis
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Title Output feedback stabilization for multi-dimensional Kirchhoff plate with general corrupted boundary observation
URI https://dx.doi.org/10.1016/j.ejcon.2015.12.004
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Volume 28
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