CPDY: Extending the Dolev-Yao Attacker with Physical-Layer Interactions
July 09, 2016 Β· Declared Dead Β· π IEEE International Conference on Formal Engineering Methods
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Authors
Marco Rocchetto, Nils Ole Tippenhauer
arXiv ID
1607.02562
Category
cs.CR: Cryptography & Security
Citations
40
Venue
IEEE International Conference on Formal Engineering Methods
Last Checked
6 months ago
Abstract
We propose extensions to the Dolev-Yao attacker model to make it suitable for arguments about security of Cyber-Physical Systems. The Dolev-Yao attacker model uses a set of rules to define potential actions by an attacker with respect to messages (i.e. information) exchanged between parties during a protocol execution. As the traditional Dolev-Yao model considers only information (exchanged over a channel controlled by the attacker), the model cannot directly be used to argue about the security of cyber-physical systems where physical-layer interactions are possible. Our Dolev-Yao extension, called cyber-physical Dolev-Yao (CPDY) attacker model, allows additional orthogonal interaction channels between the parties. In particular, such orthogonal channels can be used to model physical-layer mechanical, chemical, or electrical interactions between components. In addition, we discuss the inclusion of physical properties such as location or distance in the rule set. We present an example set of additional rules for the Dolev-Yao attacker, using those we are able to formally discover physical attacks that previously could only be found by empirical methods or detailed physical process models.
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