Modern Critical Infrastructures (CIs) are typically characterized by a large number of elements interconnected and interdependent (Kröger and Zio, 2011). Their mathematical representation reflects these characteristics in models that typically turn out to be: 1) complex, since the relation between the variables can be nonlinear; 2) large, since a high number of variables is typically involved in the model; 3) dynamic, because the behavior of the system evolves in time. For this reason, the opportunities of exploring these models in order to extract information, such as identifying the most critical events, is conditioned by the computational cost of a simulation run and by the number of variables to explore (Santner et al., 2003).

Dimensionality reduction of the resilience model of a critical infrastructure network by means of elementary effects sensitivity analysis

TURATI, PIERA RAFFAELLA;Pedroni, N.;Zio, E.
2017-01-01

Abstract

Modern Critical Infrastructures (CIs) are typically characterized by a large number of elements interconnected and interdependent (Kröger and Zio, 2011). Their mathematical representation reflects these characteristics in models that typically turn out to be: 1) complex, since the relation between the variables can be nonlinear; 2) large, since a high number of variables is typically involved in the model; 3) dynamic, because the behavior of the system evolves in time. For this reason, the opportunities of exploring these models in order to extract information, such as identifying the most critical events, is conditioned by the computational cost of a simulation run and by the number of variables to explore (Santner et al., 2003).
2017
Risk, Reliability and Safety: Innovating Theory and Practice - Proceedings of the 26th European Safety and Reliability Conference, ESREL 2016
9781138029972
Safety Research; Safety, Risk, Reliability and Quality
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1077937
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