A Bayesian network methodology for optimal security management of critical infrastructures

Journal Article (2019)
Author(s)

Alessio Misuri (University of Bologna)

Nima Khakzad (TU Delft - Safety and Security Science)

Genserik Reniers (TU Delft - Safety and Security Science)

Valerio Cozzani (University of Bologna)

Research Group
Safety and Security Science
DOI related publication
https://doi.org/10.1016/j.ress.2018.03.028
More Info
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Publication Year
2019
Language
English
Research Group
Safety and Security Science
Journal title
Reliability Engineering and System Safety
Volume number
191
Article number
106112
Downloads counter
165

Abstract

Security management of critical infrastructures is a complex task as a great variety of technical and socio-political information is needed to realistically predict the risk of intentional malevolent acts. In the present study, a methodology based on Limited Memory Influence Diagram (LIMID) has been developed for the protection of critical infrastructures via cost-effective allocation of security measures. LIMID is an extension of Bayesian network (BN) intended for decision-making, allowing for efficient modelling of complex systems while accounting for interdependencies and interaction of system components. The probability updating feature of BN has been used to investigate the effect of vulnerabilities on adversaries’ preferences when planning attacks. Moreover, the proposed methodology has been shown to be able to identify an optimal defensive strategy given an attack through maximizing defenders’ expected utility. Despite being demonstrated via a chemical facility, the methodology can easily be tailored to a wide variety of critical infrastructures.

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