Robust integrity for uncertain NNCS with actuator saturation

In this paper, the problem of robust integrity considering actuator structural failures for a class of uncertain nonlinear networked control system (NNCS) subject to actuator saturation is investigated. By utilizing the delay-dependent Lyapunov method and convex combination expression of input satur...

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Published in2013 25th Chinese Control and Decision Conference (CCDC) pp. 4953 - 4960
Main Authors Cao Huichao, Li Wei, Jiang Dong-nian
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.05.2013
Subjects
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ISBN9781467355339
146735533X
ISSN1948-9439
DOI10.1109/CCDC.2013.6561831

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Abstract In this paper, the problem of robust integrity considering actuator structural failures for a class of uncertain nonlinear networked control system (NNCS) subject to actuator saturation is investigated. By utilizing the delay-dependent Lyapunov method and convex combination expression of input saturation function, the less conservative stability criteria and the approach of robust fault-tolerant state feedback controller are derived for the control problem. By introducing a definition of the fault-tolerant attraction domain and solving an optimization problem with LMIs constraints, the maximum fault-tolerant attraction domain can be estimated. The key features of the proposed approach include the use of a tighter bounding technique for reducing conservativeness and the introduction of augmented matrix items into the Lyapunov-Krasovakii functional for reducing computational demand. Finally, an example is used to illustrate the effectiveness and the feasibility of proposed approach.approach.
AbstractList In this paper, the problem of robust integrity considering actuator structural failures for a class of uncertain nonlinear networked control system (NNCS) subject to actuator saturation is investigated. By utilizing the delay-dependent Lyapunov method and convex combination expression of input saturation function, the less conservative stability criteria and the approach of robust fault-tolerant state feedback controller are derived for the control problem. By introducing a definition of the fault-tolerant attraction domain and solving an optimization problem with LMIs constraints, the maximum fault-tolerant attraction domain can be estimated. The key features of the proposed approach include the use of a tighter bounding technique for reducing conservativeness and the introduction of augmented matrix items into the Lyapunov-Krasovakii functional for reducing computational demand. Finally, an example is used to illustrate the effectiveness and the feasibility of proposed approach.approach.
Author Cao Huichao
Jiang Dong-nian
Li Wei
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Snippet In this paper, the problem of robust integrity considering actuator structural failures for a class of uncertain nonlinear networked control system (NNCS)...
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StartPage 4953
SubjectTerms Actuator saturation
Actuators
Artificial neural networks
Comprehensive time-varying delay
Delays
Fault tolerance
Fault tolerant systems
Networked control system
Robust integrity
Robustness
Symmetric matrices
Title Robust integrity for uncertain NNCS with actuator saturation
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