Taming Cluster Synchronization

Fuente: arXiv
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Autori principali: Tomaselli, Cinzia, Gambuzza, Lucia Valentina, Sun, Gui-Quan, Boccaletti, Stefano, Frasca, Mattia
Natura: Preprint
Pubblicazione: 2024
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author Tomaselli, Cinzia
Gambuzza, Lucia Valentina
Sun, Gui-Quan
Boccaletti, Stefano
Frasca, Mattia
author_facet Tomaselli, Cinzia
Gambuzza, Lucia Valentina
Sun, Gui-Quan
Boccaletti, Stefano
Frasca, Mattia
contents Synchronization is a widespread phenomenon observed across natural and artificial networked systems. It often manifests itself by clusters of units exhibiting coincident dynamics. These clusters are a direct consequence of the organization of the Laplacian matrix eigenvalues into spectral localized blocks. We show how the concept of spectral blocks can be leveraged to design straightforward yet powerful controllers able to fully manipulate cluster synchronization of a generic network, thus shaping at will its parallel functioning. Specifically, we demonstrate how to induce the formation of spectral blocks in networks where such structures would not exist, and how to achieve precise mastering over the synchronizability of individual clusters by dictating the sequence in which each of them enters or exits the synchronization stability region as the coupling strength varies. Our results underscore the pivotal role of cluster synchronization control in shaping the parallel operation of networked systems, thereby enhancing their efficiency and adaptability across diverse applications.
format Preprint
id arxiv_https___arxiv_org_abs_2407_10638
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Taming Cluster Synchronization
Tomaselli, Cinzia
Gambuzza, Lucia Valentina
Sun, Gui-Quan
Boccaletti, Stefano
Frasca, Mattia
Chaotic Dynamics
Synchronization is a widespread phenomenon observed across natural and artificial networked systems. It often manifests itself by clusters of units exhibiting coincident dynamics. These clusters are a direct consequence of the organization of the Laplacian matrix eigenvalues into spectral localized blocks. We show how the concept of spectral blocks can be leveraged to design straightforward yet powerful controllers able to fully manipulate cluster synchronization of a generic network, thus shaping at will its parallel functioning. Specifically, we demonstrate how to induce the formation of spectral blocks in networks where such structures would not exist, and how to achieve precise mastering over the synchronizability of individual clusters by dictating the sequence in which each of them enters or exits the synchronization stability region as the coupling strength varies. Our results underscore the pivotal role of cluster synchronization control in shaping the parallel operation of networked systems, thereby enhancing their efficiency and adaptability across diverse applications.
title Taming Cluster Synchronization
topic Chaotic Dynamics
url https://arxiv.org/abs/2407.10638