Rapid and robust synchronization via weak ...
Document type :
Compte-rendu et recension critique d'ouvrage
Title :
Rapid and robust synchronization via weak synaptic coupling
Author(s) :
Lee, Jin [Auteur]
Finite-time control and estimation for distributed systems [VALSE]
Sepulchre, Rodolphe [Auteur correspondant]
University of Cambridge [UK] [CAM]
Catholic University of Leuven = Katholieke Universiteit Leuven [KU Leuven]
Finite-time control and estimation for distributed systems [VALSE]
Sepulchre, Rodolphe [Auteur correspondant]
University of Cambridge [UK] [CAM]
Catholic University of Leuven = Katholieke Universiteit Leuven [KU Leuven]
Journal title :
Automatica
Publisher :
Elsevier
Publication date :
2023
ISSN :
0005-1098
English keyword(s) :
Rapid synchronization
heterogeneous multi-agents
excitable systems
weak synaptic coupling
slow-fast models
heterogeneous multi-agents
excitable systems
weak synaptic coupling
slow-fast models
HAL domain(s) :
Sciences de l'ingénieur [physics]/Automatique / Robotique
Informatique [cs]/Système multi-agents [cs.MA]
Informatique [cs]/Systèmes et contrôle [cs.SY]
Mathématiques [math]/Optimisation et contrôle [math.OC]
Science non linéaire [physics]/Automates cellulaires et gaz sur réseau [nlin.CG]
Sciences cognitives/Neurosciences
Informatique [cs]/Système multi-agents [cs.MA]
Informatique [cs]/Systèmes et contrôle [cs.SY]
Mathématiques [math]/Optimisation et contrôle [math.OC]
Science non linéaire [physics]/Automates cellulaires et gaz sur réseau [nlin.CG]
Sciences cognitives/Neurosciences
English abstract : [en]
This paper examines how weak synaptic coupling can achieve rapid synchronization in heterogeneous networks. The assumptions aim at capturing the key mathematical properties that make this possible for biophysical networks. ...
Show more >This paper examines how weak synaptic coupling can achieve rapid synchronization in heterogeneous networks. The assumptions aim at capturing the key mathematical properties that make this possible for biophysical networks. In particular, the combination of nodal excitability and synaptic coupling are shown to be essential to the phenomenon.Show less >
Show more >This paper examines how weak synaptic coupling can achieve rapid synchronization in heterogeneous networks. The assumptions aim at capturing the key mathematical properties that make this possible for biophysical networks. In particular, the combination of nodal excitability and synaptic coupling are shown to be essential to the phenomenon.Show less >
Language :
Anglais
Popular science :
Non
European Project :
Collections :
Source :
Files
- document
- Open access
- Access the document
- Net_het_ML.pdf
- Open access
- Access the document
- 2207.08610
- Open access
- Access the document