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(2 citation statements)
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“…Based on our previous experiences, we intend to study how to deal with safety concerns in the presence of uncertainty, and how probabilistic (and statistical) model-checking techniques or correctness-by-construction techniques can be adapted to provide appropriate fail-safe guarantees for AI-based railway systems. Correctnessby-construction, in particular when considering also non-functional properties (X-by-construction), in combination with probability and runtime verification is being studied also at ISoLA [17,18]. The same holds for formal methods for AI [76].…”
Section: Formal Methods For Aimentioning
confidence: 99%
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“…Based on our previous experiences, we intend to study how to deal with safety concerns in the presence of uncertainty, and how probabilistic (and statistical) model-checking techniques or correctness-by-construction techniques can be adapted to provide appropriate fail-safe guarantees for AI-based railway systems. Correctnessby-construction, in particular when considering also non-functional properties (X-by-construction), in combination with probability and runtime verification is being studied also at ISoLA [17,18]. The same holds for formal methods for AI [76].…”
Section: Formal Methods For Aimentioning
confidence: 99%
“…In the "no-case", the model checker typically returns a counterexample, which can be inspected, tested on the model or even on the real system, and used to debug the model or the property. However, in the "yescase", no further evidence is provided 18 . This is very unfortunate for certification, not only in light of the previous limitations, but also since no information for the safety-case is provided, besides the fact that no bug has been found.…”
Section: Trustworthy and Certifiable Verificationmentioning
confidence: 99%