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Model Checking MITL Formulae on Timed Automata: A Logic-based Approach

机译:检查MITL公式的模型在定时自动机上:基于逻辑的方法

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Timed Automata (TA) is de facto a standard modelling formalism to represent systems when the interest is the analysis of their behaviour as time progresses. This modelling formalism is mostly used for checking whether the behaviours of a system satisfy a set of properties of interest. Even if efficient model-checkers for Timed Automata exist, these tools are not easily configurable. First, they are not designed to easily allow adding new Timed Automata constructs, such as new synchronization mechanisms or communication procedures, but they assume a fixed set of Timed Automata constructs. Second, they usually do not support the Metric Interval Temporal Logic (MITL) and rely on a precise semantics for the logic in which the property of interest is specified, which cannot be easily modified and customized. Finally, they do not easily allow using different solvers that may speed up verification in different contexts.This article presents a novel technique to perform model checking of Metric Interval Temporal Logic (MITL) properties on TA. The technique relies on the translation of both the TA and the MITL formula into an intermediate Constraint LTL over clocks (CLTLoc) formula, which is verified through an available decision procedure. The technique is flexible, since the intermediate logic allows the encoding of new semantics as well as new TA constructs, by just adding new CLTLoc formulae. Furthermore, our technique is not bound to a specific solver as the intermediate CLTLoc formula can be verified using different procedures.
机译:定时自动机(TA)是一个标准的模型形式主义来代表系统,当利息是随着时间的推移分析他们的行为。这种建模形式主义主要用于检查系统的行为是否满足感兴趣的一组性质。即使存在定时自动机的高效模型检查器,这些工具也不易配置。首先,它们不设计用于轻松允许添加新的定时自动机结构,例如新的同步机制或通信过程,但它们假设一个固定的定时自动机结构组。其次,它们通常不支持度量间隔时间逻辑(Mitl)并依赖于指定感兴趣属性的逻辑的精确语义,这不能轻易修改和定制。最后,它们不容易使用可能加速不同上下文验证的不同求解器。本文提出了一种新的技术,用于执行TA上的度量间隔时间逻辑(Mit1)属性的模型检查。该技术依赖于TA和MITL公式的翻译成在时钟(CLTLOC)公式的中间约束LTL中,通过可用的决定程序验证。该技术是灵活的,因为中间逻辑允许通过添加新的CLTLOC公式来编码新的语义和新的TA构造。此外,由于可以使用不同的程序验证中间体CLTLOC公式,我们的技术不束缚到特定的求解器。

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