Authors
Étienne André, Didier Lime, Mathias Ramparison, Mariëlle Stoelinga
Publication date
2021/1/1
Journal
Fundamenta Informaticae
Volume
182
Issue
1
Pages
69-94
Publisher
IOS Press
Description
Risk assessment of cyber-physical systems, such as power plants, connected devices and IT-infrastructures has always been challenging: safety (ie, absence of unintentional failures) and security (ie, no disruptions due to attackers) are conditions that must be guaranteed. One of the tradition al tools used to consider these problems is attack trees, a tree-based formalism inspired by fault trees, a well-known formalism used in safety engineering. In this paper we define and implement the translation of attack-fault trees (AFTs) to a new extension of timed automata, called parametric weighted timed automata. This allows us to parameterize constants such as time and discrete costs in an AFT and then, using the model-checker IMITATOR, to compute the set of parameter values such that a successful attack is possible. Moreover, we add the possibility to define counter-measures. Using the different sets of parameter …
Total citations
2020202120222023202414991
Scholar articles
É André, D Lime, M Ramparison, M Stoelinga - Fundamenta Informaticae, 2021