Active control of structures with uncertain coupled subsystems and actuator dynamics
This paper deals with the problem of stabilizing a class of structures subject to an uncertain excitation due to the temporary coupling of the main system with another uncertain dynamical subsystem. A Lyapunov function based control scheme is proposed to attenuate the structural vibration. In the co...
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Published in | 2004 American Control Conference Proceedings; Volume 4 of 6 Vol. 4; pp. 3544 - 3549 vol.4 |
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Main Authors | , , , |
Format | Conference Proceeding Journal Article |
Language | English |
Published |
Piscataway NJ
IEEE
01.01.2004
Evanston IL American Automatic Control Council |
Subjects | |
Online Access | Get full text |
ISBN | 9780780383357 0780383354 |
ISSN | 0743-1619 |
DOI | 10.23919/ACC.2004.1384461 |
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Abstract | This paper deals with the problem of stabilizing a class of structures subject to an uncertain excitation due to the temporary coupling of the main system with another uncertain dynamical subsystem. A Lyapunov function based control scheme is proposed to attenuate the structural vibration. In the control design, the actuator dynamics is taken into account. The control scheme is implemented by using only feedback information of the main system. The effectiveness of the control scheme is shown for a bridge platform with crossing vehicle. |
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AbstractList | This paper deals with the problem of stabilizing a class of structures subject to an uncertain excitation due to the temporary coupling of the main system with another uncertain dynamical subsystem. A Lyapunov function based control scheme is proposed to attenuate the structural vibration. In the control design, the actuator dynamics is taken into account. The control scheme is implemented by using only feedback information of the main system. The effectiveness of the control scheme is shown for a bridge platform with crossing vehicle. This paper deals with the problem of stabilizing a class of structures subject to an uncertain excitation due to the temporary coupling of the main system with another uncertain dynamical subsystem. A Lyapunov function based control scheme is proposed to attenuate the structural vibration. In the control design, the actuator dynamics is taken into account. The control scheme is implemented by using only feedback information of the main system. The effectiveness of the control scheme is shown for a bridge platform with crossing vehicle This work has been funded by lhe Commission of Science and Technology of Spain (CICYT) under the Project DPI2002-04018 |
Author | Villamizar, R. Rodellar, J. Vehi, J. Ningsu Luo |
Author_xml | – sequence: 1 surname: Ningsu Luo fullname: Ningsu Luo organization: Inst. of Inf. & Applications, Girona Univ., Spain – sequence: 2 givenname: R. surname: Villamizar fullname: Villamizar, R. organization: Inst. of Inf. & Applications, Girona Univ., Spain – sequence: 3 givenname: J. surname: Rodellar fullname: Rodellar, J. – sequence: 4 givenname: J. surname: Vehi fullname: Vehi, J. |
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Keywords | Bridges Uncertain system Vibration Active system Information system dynamic control Feedback regulation Control synthesis Coupling Dynamical system Actuator Lyapunov function |
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SubjectTerms | Actuadors Actuators Applied sciences Automatic control Bridges Civil engineering Computer science; control theory; systems Control automàtic Control design Control system synthesis Control systems Control theory. Systems Earthquake effects Efectes sísmics Equations Exact sciences and technology Feedback Force control Lyapunov functions Lyapunov, Funcions de Ponts Vehicle dynamics Vibració Vibration Vibration control |
Title | Active control of structures with uncertain coupled subsystems and actuator dynamics |
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