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Immunization of networks with non-overlapping community structure

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arxiv 1806.05637 v1 pith:HRQAMATV submitted 2018-06-14 cs.SI physics.soc-ph

classification cs.SIphysics.soc-ph
keywords communitynetworksstructurecommunitiesdeterministiclinksnodestrategies
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Although community structure is ubiquitous in complex networks, few works exploit this topological property to control epidemics. In this work, devoted to networks with non-overlapping community structure (i.e, a node belongs to a single community), we propose and investigate three deterministic immunization strategies. In order to characterize the influence of a node, various pieces of information are used such as the number of communities that the node can reach in one hop, the nature of the links (intra community links, inter community links), the size of the communities, and the interconnection density between communities. Numerical simulations with the Susceptible-Infected-Removed (SIR) epidemiological model are conducted on both real-world and synthetic networks. Experimental results show that the proposed strategies are more effective than classical deterministic alternatives that are agnostic of the community structure. Additionally, they outperform stochastic and deterministic strategies designed for modular networks.

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Cited by 1 Pith paper

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  1. On community structure in complex networks: challenges and opportunities

    physics.soc-ph 2019-08 unverdicted

    A position paper summarizing generative models, dynamic community detection, and community-aware immunization strategies, with the takeaway that exploiting community structure improves performance.

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