基本信息
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Career Trajectory
Bio
My research is in verification: formal techniques for checking that systems function correctly. In particular, I work on quantitative verification, which is used to check quantitative properties such as safety, reliability, performance and many others.
I lead the development of PRISM, the most widely-used software tool for verification of probabilistic systems. It was originally created as part of my PhD thesis. See here for some pointers about PRISM, or browse the publications and some applications. We have also developed PRISM-games, an extension of the tool for verifying stochastic games.
My research involves building and analysing formal models of systems with probabilistic and real-time behaviour. I work on a wide range of topics within probabilistic verification spanning theory and practice. I am currently particularly interested in game-theoretic methods for verification and controller synthesis, and formal verification of AI-driven systems such as robotics and autonomous systems. I'm also interested in the application of verification to computer security.
Research Interests
Papers共 160 篇Author StatisticsCo-AuthorSimilar Experts
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CoRR (2024): 80-91
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ICRA 2024 (2024)
ACM transactions on autonomous and adaptive systems (2024)
CoRR (2024)
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Roman Andriushchenko,Alexander Bork,Carlos E. Budde,Milan Češka,Kush Grover,Ernst Moritz Hahn,Arnd Hartmanns,Bryant Israelsen,Nils Jansen, Joshua Jeppson,Sebastian Junges, Maximilian A. Köhl,Bettina Könighofer,Jan Křetínský,Tobias Meggendorfer,David Parker,Stefan Pranger,Tim Quatmann,Enno Ruijters,Landon Taylor,Matthias Volk,Maximilian Weininger,Zhen Zhang
CoRR (2024)
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Foundations and Practice of Security Lecture Notes in Computer Science (2023): 36-52
Lecture Notes in Computer Science NASA Formal Methods (2023): 57-75
JOURNAL OF COMPUTATIONAL SCIENCE (2023): 102156-102156
QESTpp.1-9, (2023)
CoRR (2023)
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Author Statistics
#Papers: 163
#Citation: 10279
H-Index: 45
G-Index: 100
Sociability: 5
Diversity: 2
Activity: 28
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