Fault tolerance analysis for switched ...
Type de document :
Compte-rendu et recension critique d'ouvrage
Titre :
Fault tolerance analysis for switched systems via global passivity
Auteur(s) :
Yang, Hao [Auteur]
Cocquempot, Vincent [Auteur]
Systèmes Tolérants aux Fautes [STF]
Jiang, Bin [Auteur]
Cocquempot, Vincent [Auteur]

Systèmes Tolérants aux Fautes [STF]
Jiang, Bin [Auteur]
Titre de la revue :
IEEE Transactions on Circuits and Systems II: Express Briefs
Pagination :
1279 - 1283
Éditeur :
Institute of Electrical and Electronics Engineers
Date de publication :
2008-12-01
ISSN :
1549-7747
Mot(s)-clé(s) en anglais :
Fault diagnosis
fault tolerance
passivity
switched RLC circuits
switched systems
fault tolerance
passivity
switched RLC circuits
switched systems
Discipline(s) HAL :
Sciences de l'ingénieur [physics]/Automatique / Robotique
Résumé en anglais : [en]
In this brief, we introduce the passivity theory into the fault tolerance analysis for switched systems. We propose a ldquoglobal passivityrdquo concept which means that the total energy stored by the switched system is ...
Lire la suite >In this brief, we introduce the passivity theory into the fault tolerance analysis for switched systems. We propose a ldquoglobal passivityrdquo concept which means that the total energy stored by the switched system is less than the total energy supplied from the outside. The individual passivity of each mode is not required, and the stability of the system can be achieved via the global energy dissipativity in the presence of faults. We further provide a ldquoperiodic fault tolerant passivityrdquo to check the fault tolerance easily. The obtained results are extended to feedback interconnected systems. A switched RLC circuit example is taken to illustrate the efficiency of the proposed results.Lire moins >
Lire la suite >In this brief, we introduce the passivity theory into the fault tolerance analysis for switched systems. We propose a ldquoglobal passivityrdquo concept which means that the total energy stored by the switched system is less than the total energy supplied from the outside. The individual passivity of each mode is not required, and the stability of the system can be achieved via the global energy dissipativity in the presence of faults. We further provide a ldquoperiodic fault tolerant passivityrdquo to check the fault tolerance easily. The obtained results are extended to feedback interconnected systems. A switched RLC circuit example is taken to illustrate the efficiency of the proposed results.Lire moins >
Langue :
Anglais
Vulgarisation :
Non
Collections :
Source :