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Titlebook: B 2007: Formal Specification and Development in B; 7th International Co Jacques Julliand,Olga Kouchnarenko Conference proceedings 2006 Spri

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Physical Aggression between Spousesathematical) models and the current work intends to integrate time constraints in the modelling process based on event B models and refinement. The starting point of our work is the event B development of the IEEE 1394 leader election protocol; from standard documents, we derive temporal requirement
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Thomas C. Todd,M. Duncan Stantonerrupt driven scheduling. We first consider a model with two executing tasks, presented with the aid of state machine diagrams. We then present a faulty variant of this model which, under particular event timings, may ”drop” an interrupt. We show how the failure to discharge a particular proof oblig
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Individual and Marital Developmentut in a non-formal sense, particularly for validation by non-specialist industrial partners. Here we present a visualisation of, and guidance for, event B refinement using a specialisation of UML statemachines. Furthermore, we introduce design patterns and process rules that are aimed at assisting i
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https://doi.org/10.1007/978-1-4684-4442-1itecture (MDA) context. The models are constructed using state-machines in the Unified Modeling Language (UML). As a formal framework for reasoning about the models we use Event B. In this paper we illustrate our method by introducing fault tolerance to the PSM. Fault tolerance is not considered in
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https://doi.org/10.1007/978-3-319-40007-5ocess [24]. We argue that it is possible to build a formal link between concrete and abstract terms, which can be dynamically computed from the environment data. In order to progressively introduce configuration data and then simplify the proof obligations, we use the . refinement process. We presen
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