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Titlebook: Implicit and Explicit Semantics Integration in Proof-Based Developments of Discrete Systems; Communications of NI Yamine Ait-Ameur,Shin Nak

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Formal Ontological Analysis for Medical Protocols of guidelines and protocols is lacking in quality. Indeed, ambiguity and incompleteness are likely anomalies in medical practice. In order to find anomalies and to improve the quality of medical protocols, this paper presents a stepwise formal development of a medical protocol. In this development,
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Deriving Implicit Security Requirements in Safety-Explicit Formal Development of Control Systems should guarantee that the system safety is not jeopardised by the security attacks. However, often the security requirements are not uncovered until the late design stages. Hence, there is a clear need for the modelling techniques that enable a formal reasoning about safety and security interdepend
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Configuration of Complex Systems—Maintaining Consistency at Runtimesystem, e.g., platform, middleware, etc. To form a consistent system configuration, these independently developed configurations, also known as partial configurations or configuration fragments, need to be integrated together. This integration is a challenging task, mainly because of overlapping ent
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The Indefeasibility Criterion for Assurance Casesd the best we humans can achieve is well-justified belief. So what justification should be considered adequate for a belief in safety? We adopt a criterion from epistemology and argue that assurance should be “indefeasible,” meaning that we must be so sure that all doubts and objections have been at
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Explicit Exploration of Refinement Design in Proof-Based Approach: Refinement Engineering in Event-Bndability assurance have been used to explore this point by using refinement mechanisms, with which complex models are gradually constructed and verified. However, refinement mechanisms to derive the whole specification of systems are relatively new, as with the Event-B method, and refinement design
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