On input-to-output stability and robust ...
Document type :
Compte-rendu et recension critique d'ouvrage
Title :
On input-to-output stability and robust synchronization of generalized Persidskii systems
Author(s) :
Mei, Wenjie [Auteur]
Finite-time control and estimation for distributed systems [VALSE]
Efimov, Denis [Auteur]
Finite-time control and estimation for distributed systems [VALSE]
Ushirobira, Rosane [Auteur]
Finite-time control and estimation for distributed systems [VALSE]
Finite-time control and estimation for distributed systems [VALSE]
Efimov, Denis [Auteur]

Finite-time control and estimation for distributed systems [VALSE]
Ushirobira, Rosane [Auteur]

Finite-time control and estimation for distributed systems [VALSE]
Journal title :
IEEE Transactions on Automatic Control
Publisher :
Institute of Electrical and Electronics Engineers
Publication date :
2021
ISSN :
0018-9286
English keyword(s) :
robust synchronization
generalized Persidskii systems
Input-to-output stability
generalized Persidskii systems
Input-to-output stability
HAL domain(s) :
Sciences de l'ingénieur [physics]/Automatique / Robotique
English abstract : [en]
In this paper, we study a class of generalized Persidskii systems with external disturbances and establish conditions, in the form of linear matrix inequalities, for input-to-output stability (IOS) and robust synchronization ...
Show more >In this paper, we study a class of generalized Persidskii systems with external disturbances and establish conditions, in the form of linear matrix inequalities, for input-to-output stability (IOS) and robust synchronization for these systems. We apply the obtained results to the robust control design for synchronizing linear systems and to the synchronization of Hindmarsh-Rose models of neurons.Show less >
Show more >In this paper, we study a class of generalized Persidskii systems with external disturbances and establish conditions, in the form of linear matrix inequalities, for input-to-output stability (IOS) and robust synchronization for these systems. We apply the obtained results to the robust control design for synchronizing linear systems and to the synchronization of Hindmarsh-Rose models of neurons.Show less >
Language :
Anglais
Popular science :
Non
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