
doi: 10.3233/fi-2016-1304
A quantification of process’s security by differential privacy is defined and studied in the framework of probabilistic process algebras. The resulting (quantitative) security properties are investigated and compared with other (qualitative and quantitative) security notions.
probabilistic process algebra, Probability in computer science (algorithm analysis, random structures, phase transitions, etc.), information flow, differential privacy, Models and methods for concurrent and distributed computing (process algebras, bisimulation, transition nets, etc.), opacity, min-entropy, security, Authentication, digital signatures and secret sharing
probabilistic process algebra, Probability in computer science (algorithm analysis, random structures, phase transitions, etc.), information flow, differential privacy, Models and methods for concurrent and distributed computing (process algebras, bisimulation, transition nets, etc.), opacity, min-entropy, security, Authentication, digital signatures and secret sharing
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