Robust Stabilization of Competing Species ...
Type de document :
Compte-rendu et recension critique d'ouvrage
Titre :
Robust Stabilization of Competing Species in the Chemostat
Auteur(s) :
Dos Reis De Souza, Alex [Auteur correspondant]
Finite-time control and estimation for distributed systems [VALSE]
Efimov, Denis [Auteur]
Finite-time control and estimation for distributed systems [VALSE]
Polyakov, Andrey [Auteur]
Finite-time control and estimation for distributed systems [VALSE]
Gouzé, Jean-Luc [Auteur]
Biological control of artificial ecosystems [BIOCORE]
Finite-time control and estimation for distributed systems [VALSE]
Efimov, Denis [Auteur]
Finite-time control and estimation for distributed systems [VALSE]
Polyakov, Andrey [Auteur]
Finite-time control and estimation for distributed systems [VALSE]
Gouzé, Jean-Luc [Auteur]
Biological control of artificial ecosystems [BIOCORE]
Titre de la revue :
Journal of Process Control
Pagination :
138-146
Éditeur :
Elsevier
Date de publication :
2020
ISSN :
0959-1524
Mot(s)-clé(s) en anglais :
chemostat
sliding-mode
biological process
Robust control
sliding-mode
biological process
Robust control
Discipline(s) HAL :
Sciences de l'ingénieur [physics]/Automatique / Robotique
Résumé en anglais : [en]
This work addresses the problem of robust stabilization of the concentrations of two different species of living organisms, which compete for a single limiting substrate in a bioreactor. This stabilization is performed ...
Lire la suite >This work addresses the problem of robust stabilization of the concentrations of two different species of living organisms, which compete for a single limiting substrate in a bioreactor. This stabilization is performed using discontinuous feedback control laws that ensure the coexistence of all species. The control laws are designed considering bounded parametric uncertainties on the kinetic rates.Lire moins >
Lire la suite >This work addresses the problem of robust stabilization of the concentrations of two different species of living organisms, which compete for a single limiting substrate in a bioreactor. This stabilization is performed using discontinuous feedback control laws that ensure the coexistence of all species. The control laws are designed considering bounded parametric uncertainties on the kinetic rates.Lire moins >
Langue :
Anglais
Vulgarisation :
Non
Collections :
Source :
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