Recent advances in spatial and temporal networks have enabled researchers to more-accurately describe many real-world systems such as urban transport networks. In this paper, we study the response of real-world spatio-temporal networks to random error and systematic attack, taking a unified view of their spatial and temporal performance. We propose a model of spatio-temporal paths in time-varying spatially embedded networks which captures the property that, as in many real-world systems, interaction between nodes is non-instantaneous and governed by the space in which they are embedded. Through numerical experiments on three real-world urban transport systems, we study the effect of node failure on a network's topological, temporal and spatial structure. We also demonstrate the broader applicability of this framework to three other classes of network. To identify weaknesses specific to the behaviour of a spatio-temporal system, we introduce centrality measures that evaluate the importance of a node as a structural bridge and its role in supporting spatio-temporally efficient flows through the network. This exposes the complex nature of fragility in a spatio-temporal system, showing that there is a variety of failure modes when a network is subject to systematic attacks.

Spatio-temporal networks: reachability, centrality and robustness / Williams, MJ and Musolesi, M. - In: ROYAL SOCIETY OPEN SCIENCE. - ISSN 2054-5703. - ELETTRONICO. - 3:6(2016), pp. 160196.1-160196.20. [10.1098/rsos.160196]

Spatio-temporal networks: reachability, centrality and robustness

Musolesi, M
2016

Abstract

Recent advances in spatial and temporal networks have enabled researchers to more-accurately describe many real-world systems such as urban transport networks. In this paper, we study the response of real-world spatio-temporal networks to random error and systematic attack, taking a unified view of their spatial and temporal performance. We propose a model of spatio-temporal paths in time-varying spatially embedded networks which captures the property that, as in many real-world systems, interaction between nodes is non-instantaneous and governed by the space in which they are embedded. Through numerical experiments on three real-world urban transport systems, we study the effect of node failure on a network's topological, temporal and spatial structure. We also demonstrate the broader applicability of this framework to three other classes of network. To identify weaknesses specific to the behaviour of a spatio-temporal system, we introduce centrality measures that evaluate the importance of a node as a structural bridge and its role in supporting spatio-temporally efficient flows through the network. This exposes the complex nature of fragility in a spatio-temporal system, showing that there is a variety of failure modes when a network is subject to systematic attacks.
2016
Spatio-temporal networks: reachability, centrality and robustness / Williams, MJ and Musolesi, M. - In: ROYAL SOCIETY OPEN SCIENCE. - ISSN 2054-5703. - ELETTRONICO. - 3:6(2016), pp. 160196.1-160196.20. [10.1098/rsos.160196]
Williams, MJ and Musolesi, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/741884
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