PublicadoEl 23/11/22 por Comillas
Artículo

Vulnerability of state-interdependent networks under malware spreading

tipo de documento semantico ckh_publication

Ficheros

1310.0741.pdf
Tamaño 945416
Formato Adobe PDF
Fecha de publicación 02/03/2020
Autor
Vida Delgado, Rafael Ángel
Fuente Revista: Physica a-Statistical Mechanics And Its Applications, Periodo: 1, Volumen: 421, Número: , Página inicial: 134, Página final: 140
Estado info:eu-repo/semantics/publishedVersion

Resumen

Idioma es-ES
Resumen

Computer viruses are evolving by developing spreading mechanisms based on the use of multiple vectors of propagation. The use of the social network as an extra vector of attack to penetrate the security measures in IP networks is improving the effectiveness of malware, and have therefore been used by the most aggressive viruses, like Conficker and Stuxnet. In this work we use interdependent networks to model the propagation of these kind of viruses. In particular, we study the propagation of a SIS model on interdependent networks where the state of each node is layer-independent and the dynamics in each network follows either a contact process or a reactive process, with different propagation rates. We apply this study to the case of existing interdependent networks, namely a Spanish scientific community of Statistical Physics, formed by a social network of scientific collaborations and a physical network of connected computers in each institution. We show that the interplay between layers increases dramatically the infectivity of viruses in the long term and their robustness against immunization.

Idioma en-GB
Resumen

Computer viruses are evolving by developing spreading mechanisms based on the use of multiple vectors of propagation. The use of the social network as an extra vector of attack to penetrate the security measures in IP networks is improving the effectiveness of malware, and have therefore been used by the most aggressive viruses, like Conficker and Stuxnet. In this work we use interdependent networks to model the propagation of these kind of viruses. In particular, we study the propagation of a SIS model on interdependent networks where the state of each node is layer-independent and the dynamics in each network follows either a contact process or a reactive process, with different propagation rates. We apply this study to the case of existing interdependent networks, namely a Spanish scientific community of Statistical Physics, formed by a social network of scientific collaborations and a physical network of connected computers in each institution. We show that the interplay between layers increases dramatically the infectivity of viruses in the long term and their robustness against immunization.

Palabras clave

Tipo de archivo application/pdf
Idioma en-GB
Tipo de acceso info:eu-repo/semantics/openAccess
Licencia http://creativecommons.org/licenses/by-nc-nd/3.0/es/
Fecha de modificacion 09/09/2022
Fecha de disponibilidad 02/09/2019
fecha de alta 02/09/2019

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