Title :
Beyond Attack Trees: Dynamic Security Modeling with Boolean Logic Driven Markov Processes (BDMP)
Author :
Ludovic Piètre-Cambacédès;Marc Bouissou
Author_Institution :
Electricite de France (EDF) R&
Abstract :
Boolean logic Driven Markov Processes (BDMP) are a powerful modeling tool used in the reliability and safety domains. We propose to take advantage of their capabilities to go beyond the traditional techniques used to model attack scenarios. In particular we show how this new approach can be seen as preferable to attack trees and Petri net-based methods. Attack trees are inherently static and limited to independent events, whereas BDMP are dynamic and can take into account simple dependences. This allows the modeling of attack sequences, but also of defensive aspects such as detections. Petri net-based approaches are highly flexible but often lack readability and scalability; BDMP representations are close to attack trees, inheriting their readability and easy appropriation. Moreover, BDMP have mathematical properties leading to drastic reductions of combinatorial problems, allowing efficient scenarios processing and time dependent quantifications. Finally, limits and improvement perspectives are discussed.
Keywords :
"Boolean functions","Markov processes","Tree graphs","Fault trees","Data security","Telecommunication computing","Research and development","Electrical safety","Scalability","Risk analysis"
Conference_Titel :
Dependable Computing Conference (EDCC), 2010 European
Print_ISBN :
978-1-4244-6593-4;978-0-7695-4007-8
DOI :
10.1109/EDCC.2010.32