Quantitative analysis of attack-fault trees via Markov decision processes

Fuente: arXiv
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Main Author: Lopuhaä-Zwakenberg, Milan
Format: Preprint
Published: 2024
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author Lopuhaä-Zwakenberg, Milan
author_facet Lopuhaä-Zwakenberg, Milan
contents Adequate risk assessment of safety critical systems needs to take both safety and security into account, as well as their interaction. A prominent methodology for modeling safety and security are attack-fault trees (AFTs), which combine the well-established fault tree and attack tree methodologies for safety and security, respectively. AFTs can be used for quantitative analysis as well, capturing the interplay between safety and security metrics. However, existing approaches are based on modeling the AFT as a priced-timed automaton. This allows for a wide range of analyses, but Pareto analsis is still lacking, and analyses that exist are computationally expensive. In this paper, we combine safety and security analysis techniques to introduce a novel method to find the Pareto front between the metrics reliability (safety) and attack cost (security) using Markov decision processes. This gives us the full interplay between safety and security while being considerably more lightweight and faster than the automaton approach. We validate our approach on a case study of cyberattacks on an oil pipe line.
format Preprint
id arxiv_https___arxiv_org_abs_2408_06914
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Quantitative analysis of attack-fault trees via Markov decision processes
Lopuhaä-Zwakenberg, Milan
Cryptography and Security
Adequate risk assessment of safety critical systems needs to take both safety and security into account, as well as their interaction. A prominent methodology for modeling safety and security are attack-fault trees (AFTs), which combine the well-established fault tree and attack tree methodologies for safety and security, respectively. AFTs can be used for quantitative analysis as well, capturing the interplay between safety and security metrics. However, existing approaches are based on modeling the AFT as a priced-timed automaton. This allows for a wide range of analyses, but Pareto analsis is still lacking, and analyses that exist are computationally expensive. In this paper, we combine safety and security analysis techniques to introduce a novel method to find the Pareto front between the metrics reliability (safety) and attack cost (security) using Markov decision processes. This gives us the full interplay between safety and security while being considerably more lightweight and faster than the automaton approach. We validate our approach on a case study of cyberattacks on an oil pipe line.
title Quantitative analysis of attack-fault trees via Markov decision processes
topic Cryptography and Security
url https://arxiv.org/abs/2408.06914