Amb motiu del tancament d'estiu, la validació de documents es reprendrà a partir del 28 d'agost de 2026. Disculpeu les molèsties.
Con motivo del cierre de verano, la validación de documentos se reanudará a partir del 28 de agosto de 2026. Disculpad las molestias
Due to the summer closure, document validation will resume starting August 28, 2026. We apologize for any inconvenience.

Document type

Article

Version

Published version

Publication date

Publication license

cc by (c) Rosell-Tarragó et al., 2020
Please use this identifier to cite or link to this item: https://hdl.handle.net/2445/148259

Functionability in complex networks: Leading nodes for the transition from structural to functional networks through remote asynchronization

Journal Title

Director/Tutor

Journal ISSN

Volume Title

Abstract

Complex networks are essentially heterogeneous not only in the basic properties of the constituent nodes, such as their degree, but also in the effects that these have on the global dynamical properties of the network. Networks of coupled identical phase oscillators are good examples for analyzing these effects, since an overall synchronized state can be considered a reference state. A small variation of intrinsic node parameters may cause the system to move away from synchronization, and a new phase-locked stationary state can be achieved. We propose a measure of phase dispersion that quantifies the functional response of the system to a given local perturbation. As a particular implementation, we propose a variation of the standard Kuramoto model in which the nodes of a complex network interact with their neighboring nodes, by including a node-dependent frustration parameter. The final stationary phase-locked state now depends on the particular frustration parameter at each node and also on the network topology. We exploit this scenario by introducing individual frustration parameters and measuring what their effect on the whole network is, measured in terms of the phase dispersion, which depends only on the topology of the network and on the choice of the particular node that is perturbed. This enables us to define a characteristic of the node, its functionability, that can be computed analytically in terms of the network topology. Finally, we provide a thorough comparison with other centrality measures.

Citation

Citation

ROSELL-TARRAGÓ, Gemma and DÍAZ GUILERA, Albert. Functionability in complex networks: Leading nodes for the transition from structural to functional networks through remote asynchronization. Chaos. 2020. Vol. 30, num. 013105. ISSN 1054-1500. [consulted: 16 of August of 2026]. Available at: https://hdl.handle.net/2445/148259

Export metadata

JSON - METS

Share record