2014
DOI: 10.1073/pnas.1318469111
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Navigability of interconnected networks under random failures

Abstract: Assessing the navigability of interconnected networks (transporting information, people, or goods) under eventual random failures is of utmost importance to design and protect critical infrastructures. Random walks are a good proxy to determine this navigability, specifically the coverage time of random walks, which is a measure of the dynamical functionality of the network. Here, we introduce the theoretical tools required to describe random walks in interconnected networks accounting for structure and dynami… Show more

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Cited by 412 publications
(387 citation statements)
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“…As an example, we have applied it also to social 17 and economical systems, coauthorship networks 36 , metropolitan transportation networks 24 and continental air transportation systems 20 (see Table 1). A particularly interesting case is that of the FAO (Food and Agriculture Organization of the United Nations) worldwide food import/export network, an economic network in which layers represent products, nodes are countries and edges at each layer represent import/export relationships of a specific food product among countries.…”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…As an example, we have applied it also to social 17 and economical systems, coauthorship networks 36 , metropolitan transportation networks 24 and continental air transportation systems 20 (see Table 1). A particularly interesting case is that of the FAO (Food and Agriculture Organization of the United Nations) worldwide food import/export network, an economic network in which layers represent products, nodes are countries and edges at each layer represent import/export relationships of a specific food product among countries.…”
Section: Resultsmentioning
confidence: 99%
“…Similarly, in biological systems basic constituents such as proteins can have physical, co-localization, genetic or many other types of interactions. Recently, it has been shown that retaining such multi-dimensional information 7 and modelling the structure of interdependent and multilayer systems respectively through interdependent 8 and multilayer networks [9][10][11][12] reveals new nontrivial structural properties [13][14][15][16][17][18][19][20] and relevant emergent physical phenomena [21][22][23][24][25][26][27] .…”
mentioning
confidence: 99%
“…Interconnected networks are mathematical representations of systems where two or more simple networks, possibly with different functionalities, are coupled to each other. The omnipresence of interconnected networks has spurred a variety of research [4][5][6][7], with particular interest in dynamical processes such as percolation [8,9], epidemic spreading [10][11][12][13], and diffusion [14,15].…”
mentioning
confidence: 99%
“…As mentioned above diffusion dynamics on networks can be studied analytically using transition matrices of random walkers [8,9]. The multi-layer structure of a network can explicitly be incorporated in a random walk model by constructing a so-called supra-transition matrix [3,12] similar to the supra-adjacency matrix used in [9,10,11].…”
Section: Multi-layer Networkmentioning
confidence: 99%
“…The multi-layer structure of a network can explicitly be incorporated in a random walk model by constructing a so-called supra-transition matrix [3,12] similar to the supra-adjacency matrix used in [9,10,11]. The supra-adjacency matrix of a multi-layer network G can be defined in a block-matrix structure as…”
Section: Multi-layer Networkmentioning
confidence: 99%