Finite-time control for interval type-2 fuzzy time-delay systems with norm-bounded uncertainties and limited communication capacity

This paper investigates the finite-time stabilization problem for interval type-2 T-S fuzzy systems with norm-bounded uncertainties and time-varying delays. A static output feedback controller is designed to guarantee the finite-time stability of closed-loop fuzzy control systems. Data packet loss i...

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Published inInformation sciences Vol. 483; pp. 153 - 173
Main Authors Zhao, Tao, Liu, Jiahao, Dian, Songyi
Format Journal Article
LanguageEnglish
Published Elsevier Inc 01.05.2019
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Abstract This paper investigates the finite-time stabilization problem for interval type-2 T-S fuzzy systems with norm-bounded uncertainties and time-varying delays. A static output feedback controller is designed to guarantee the finite-time stability of closed-loop fuzzy control systems. Data packet loss is assumed to exist in the feedback transmission channel, and a novel delay product-type Lyapunov–Krasovskii function is constructed for deriving the delay-dependent stabilization conditions. These conditions can be denoted by linear matrix inequalities, according to matrix decoupling techniques and inequality constriction methods. The information of the upper and lower membership functions is integrated into the stabilization conditions using a membership function-dependent analysis method to reduce conservativeness. The simulation results demonstrate the effectiveness of the proposed finite-time control method.
AbstractList This paper investigates the finite-time stabilization problem for interval type-2 T-S fuzzy systems with norm-bounded uncertainties and time-varying delays. A static output feedback controller is designed to guarantee the finite-time stability of closed-loop fuzzy control systems. Data packet loss is assumed to exist in the feedback transmission channel, and a novel delay product-type Lyapunov–Krasovskii function is constructed for deriving the delay-dependent stabilization conditions. These conditions can be denoted by linear matrix inequalities, according to matrix decoupling techniques and inequality constriction methods. The information of the upper and lower membership functions is integrated into the stabilization conditions using a membership function-dependent analysis method to reduce conservativeness. The simulation results demonstrate the effectiveness of the proposed finite-time control method.
Author Zhao, Tao
Liu, Jiahao
Dian, Songyi
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Keywords Data packet dropouts
Interval type-2 fuzzy system
Norm-bounded uncertainties
Time-delay
Finite-time stability
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Snippet This paper investigates the finite-time stabilization problem for interval type-2 T-S fuzzy systems with norm-bounded uncertainties and time-varying delays. A...
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StartPage 153
SubjectTerms Data packet dropouts
Finite-time stability
Interval type-2 fuzzy system
Norm-bounded uncertainties
Time-delay
Title Finite-time control for interval type-2 fuzzy time-delay systems with norm-bounded uncertainties and limited communication capacity
URI https://dx.doi.org/10.1016/j.ins.2019.01.044
Volume 483
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