System Validation (3): Requirements by modal formulas

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EIT Digital

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In this module you learn how to specify requirements on behaviour. First Hennessy-Milner logic is explained, which is subsequently extended with fixed-points. Using this logic you will be able to formally characterise virtually any behavioral property on the behavior of software. This varies from simple properties such as a system is free from deadlocks, to complex properties such as "in a warehouse the controllers will instruct all the robots such that my ordered item will appear for certain within finite time at the output".

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课程详情

System Validation is the field that studies the fundamentals of system communication and information processing. It allows automated analysis based on behavioural models of a system to see if a system works correctly. We want to guarantee that the systems does exactly what it is supposed to do. The techniques put forward in system validation allow to prove the absence of errors. It allows to design embedded system behaviour that is structurally sound and as a side effect enforces you to make the behaviour simple and insightful. This means that the systems are not only behaving correctly, but are also much easier to maintain and adapt. ’Requirements by modal formulas' is the third course that shows you how to specify requirements for the automata in order to establish the correct relation between the requirements and the behaviour of the system. Reading material. J.F. Groote and M.R. Mousavi. Modeling and analysis of communicating systems. The MIT Press, 2014.

系统验证(3):模态公式的要求:系统验证是研究系统通信和信息处理基础的领域。它允许基于系统的行为模型进行自动分析,以查看系统是否正常运行。我们要保证系统能够完全按照预期的方式运行。系统验证中提出的技术可以证明没有错误。它允许设计结构合理的嵌入式系统行为,并且副作用使您不得不使行为简单明了。这意味着系统不仅行为正确,而且易于维护和适应。 “模态公式的需求”是第三门课程,向您展示如何为自动机指定需求,以便在需求和系统行为之间建立正确的关系。阅读材料。 J.F. Groote和M.R. Mousavi。通信系统的建模和分析。麻省理工学院出版社,2014年。

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