H ∞ / H − fault detection observer design ...
Document type :
Compte-rendu et recension critique d'ouvrage
Title :
H ∞ / H − fault detection observer design for nonlinear conformable fractional-order systems
Author(s) :
Du, Dongsheng [Auteur]
Sun, Shennan [Auteur]
Cocquempot, Vincent [Auteur]
Centre de Recherche en Informatique, Signal et Automatique de Lille - UMR 9189 [CRIStAL]
Zhao, Huanyu [Auteur]
Sun, Shennan [Auteur]
Cocquempot, Vincent [Auteur]

Centre de Recherche en Informatique, Signal et Automatique de Lille - UMR 9189 [CRIStAL]
Zhao, Huanyu [Auteur]
Journal title :
Journal of Computational and Applied Mathematics
Pages :
115711
Publisher :
Elsevier
Publication date :
2024-05-15
ISSN :
0377-0427
English keyword(s) :
Conformable fractional-order system
Fault detection
Nonlinear
Observer
Fault detection
Nonlinear
Observer
HAL domain(s) :
Informatique [cs]/Automatique
English abstract : [en]
This study is concerned with the design of fault detection observers for nonlinear conformable fractional-order systems. An H∞/H− fault detection scheme is applied to maximize the sensitivity of faults and minimize the ...
Show more >This study is concerned with the design of fault detection observers for nonlinear conformable fractional-order systems. An H∞/H− fault detection scheme is applied to maximize the sensitivity of faults and minimize the effect of disturbances. Based on basic fractional calculus lemmas and fractional-order Lyapunov stability theory, sufficient conditions are obtained to design a fault detection observer. Finally, the advantages and effectiveness of the proposed fault detection method are illustrated through a numerical example.Show less >
Show more >This study is concerned with the design of fault detection observers for nonlinear conformable fractional-order systems. An H∞/H− fault detection scheme is applied to maximize the sensitivity of faults and minimize the effect of disturbances. Based on basic fractional calculus lemmas and fractional-order Lyapunov stability theory, sufficient conditions are obtained to design a fault detection observer. Finally, the advantages and effectiveness of the proposed fault detection method are illustrated through a numerical example.Show less >
Language :
Anglais
Popular science :
Non
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