Adaptive neural network tracking of a class of switched nonlinear systems with time-varying output constraints

An approximation-based adaptive design problem for output-constrained tracking of a class of switched pure-feedback nonlinear systems is investigated under arbitrary switchings. All switched nonlinearities are assumed to be unknown. Contrary to the existing control results for uncertain switched pur...

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Published inInternational journal of control, automation, and systems Vol. 15; no. 3; pp. 1425 - 1433
Main Authors Lee, Seung Woo, Kim, Hyoung Oh, Yoo, Sung Jin
Format Journal Article
LanguageEnglish
Published Bucheon / Seoul Institute of Control, Robotics and Systems and The Korean Institute of Electrical Engineers 01.06.2017
Springer Nature B.V
제어·로봇·시스템학회
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ISSN1598-6446
2005-4092
DOI10.1007/s12555-016-0339-5

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Abstract An approximation-based adaptive design problem for output-constrained tracking of a class of switched pure-feedback nonlinear systems is investigated under arbitrary switchings. All switched nonlinearities are assumed to be unknown. Contrary to the existing control results for uncertain switched pure-feedback nonlinear systems where the number of the used function approximators should be equal to the order of the systems, an adaptive control scheme based on only two neural networks is designed by using a system transformation and the common Lyapunov function method, regardless of the order of the system. In the proposed controller, the output constraints are used to establish designable time-varying bounds on the tracking performance. The stability and the constraint satisfaction of the resulting closed-loop system are shown in the sense of Lyapunov stability criterion. Finally, simulation examples are provided to illustrate the effectiveness of the proposed methodology.
AbstractList An approximation-based adaptive design problem for output-constrained tracking of a class of switchedpure-feedback nonlinear systems is investigated under arbitrary switchings. All switched nonlinearities are assumedto be unknown. Contrary to the existing control results for uncertain switched pure-feedback nonlinear systemswhere the number of the used function approximators should be equal to the order of the systems, an adaptivecontrol scheme based on only two neural networks is designed by using a system transformation and the commonLyapunov function method, regardless of the order of the system. In the proposed controller, the output constraintsare used to establish designable time-varying bounds on the tracking performance. The stability and the constraintsatisfaction of the resulting closed-loop system are shown in the sense of Lyapunov stability criterion. Finally,simulation examples are provided to illustrate the effectiveness of the proposed methodology. KCI Citation Count: 7
An approximation-based adaptive design problem for output-constrained tracking of a class of switched pure-feedback nonlinear systems is investigated under arbitrary switchings. All switched nonlinearities are assumed to be unknown. Contrary to the existing control results for uncertain switched pure-feedback nonlinear systems where the number of the used function approximators should be equal to the order of the systems, an adaptive control scheme based on only two neural networks is designed by using a system transformation and the common Lyapunov function method, regardless of the order of the system. In the proposed controller, the output constraints are used to establish designable time-varying bounds on the tracking performance. The stability and the constraint satisfaction of the resulting closed-loop system are shown in the sense of Lyapunov stability criterion. Finally, simulation examples are provided to illustrate the effectiveness of the proposed methodology.
Author Yoo, Sung Jin
Kim, Hyoung Oh
Lee, Seung Woo
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Keywords Switched nonlinear systems
arbitrary switching
time-varying output constraints
neural networks
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Snippet An approximation-based adaptive design problem for output-constrained tracking of a class of switched pure-feedback nonlinear systems is investigated under...
An approximation-based adaptive design problem for output-constrained tracking of a class of switchedpure-feedback nonlinear systems is investigated under...
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SubjectTerms Adaptive control
Approximation
Closed loop systems
Computer simulation
Control
Effectiveness
Engineering
Feedback
Liapunov functions
Mechatronics
Neural networks
Nonlinear systems
Output
Regular Papers
Robotics
Simulation
Stability criteria
Studies
Switching theory
Tracking
Transformations (mathematics)
제어계측공학
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