The notion of Control in Complex Systems has started almost 60 years ago by Kalman. However, the results obtained were not sufficient for systems with complex topologies (Complex Networks) and non-linear dynamics. Thanks to many works and especially the one of Liu et.al. on 2011, the topic of Control in Complex networks has returned to the forefront and has been studied intensively during the last decade. Big progress has been made, but still there are many different aspects unsolved in the area. Different notions like structural controllability or required energy to control a network have been imported, but a unifying framework between Complex Systems and Control Theory is still missing, as non-linearity, complexity and dimensionality make...
In this work, a synchronization scheme for networks of complex systems is presented. The proposed sy...
For any network topology, we investigate a complex variant of the Kuramoto model, whose real part fo...
Several complex systems can be modeled as large networks in which the state of the nodes continuousl...
Synchronization is crucial for the correct functionality of many natural and man-made complex system...
Synchronization is crucial for the correct functionality of many natural and man-made complex system...
We consider various problems relating to synchronization in networks of cou-pled oscillators. In Cha...
We obtain results for two distinct dynamical models: the Kuramoto model, a general model for coupled...
Synchronization is crucial for the correct functionality of many natural and man-made complex system...
In this paper, we propose a decentralized strategy to control the topology of Kuramoto oscillators c...
181 pages, 48 figures. In Press, Accepted Manuscript, Physics Reports 2015 Acknowledgments We are in...
AbstractFrom the flashing of fireflies to autonomous robot swarms, synchronization phenomena are ubi...
Synchrony is a phenomenon that pervades all fields of science. The Kuramoto model is a prominent mod...
We compare two methods for controlling synchronisation in the Kuramoto model on an undirected networ...
We investigate how we can improve the synchronizability of complex networks simply by changing the l...
The emergence of synchronization in a network of coupled oscillators is a fascinating subject of mul...
In this work, a synchronization scheme for networks of complex systems is presented. The proposed sy...
For any network topology, we investigate a complex variant of the Kuramoto model, whose real part fo...
Several complex systems can be modeled as large networks in which the state of the nodes continuousl...
Synchronization is crucial for the correct functionality of many natural and man-made complex system...
Synchronization is crucial for the correct functionality of many natural and man-made complex system...
We consider various problems relating to synchronization in networks of cou-pled oscillators. In Cha...
We obtain results for two distinct dynamical models: the Kuramoto model, a general model for coupled...
Synchronization is crucial for the correct functionality of many natural and man-made complex system...
In this paper, we propose a decentralized strategy to control the topology of Kuramoto oscillators c...
181 pages, 48 figures. In Press, Accepted Manuscript, Physics Reports 2015 Acknowledgments We are in...
AbstractFrom the flashing of fireflies to autonomous robot swarms, synchronization phenomena are ubi...
Synchrony is a phenomenon that pervades all fields of science. The Kuramoto model is a prominent mod...
We compare two methods for controlling synchronisation in the Kuramoto model on an undirected networ...
We investigate how we can improve the synchronizability of complex networks simply by changing the l...
The emergence of synchronization in a network of coupled oscillators is a fascinating subject of mul...
In this work, a synchronization scheme for networks of complex systems is presented. The proposed sy...
For any network topology, we investigate a complex variant of the Kuramoto model, whose real part fo...
Several complex systems can be modeled as large networks in which the state of the nodes continuousl...