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Specification Mutation Analysis for Validating Timed Testing Approaches Based on Timed Automata

机译:基于定时自动机验证定时测试方法的规范突变分析

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Testing real-time systems is a non-trivial validation task, especially after adding time as a new dimension to its complexity. In previous research, we introduced a 'priority-based' approach which tested the logical and timing behaviour of real-time systems modelled formally as UPPAAL Timed Automata (UTA). In this paper, we validate the 'priority-based' approach with a comparison to four well-known timed testing approaches based on a Timed Automata (TA) formalism using Specification Mutation Analysis (SMA). We introduce a set of timed and functional mutation operators based on TA. Three case studies are used to run the mutation analysis and mutants are generated according to the proposed mutation operators. The effectiveness of timed testing approaches are determined and contrasted according to the mutation score; we show that our testing approach achieves high mutation adequacy score when compared with others.
机译:测试实时系统是一个非琐碎的验证任务,尤其是在添加时间后添加到其复杂性的新维度之后。在以前的研究中,我们介绍了一种“优先级”的方法,该方法测试了正式建模的实时系统的逻辑和时序行为,作为UPPAAL定时自动机(UTA)。在本文中,我们通过使用规范突变分析(SMA)的定时自动机(TA)形式主义来验证“优先基于基于的基于优先级的”方法。我们介绍了一组基于TA的定时和功能突变运算符。使用三种案例研究来运行突变分析,并且根据所提出的突变算子产生突变体。根据突变得分确定和对比定时测试方法的有效性;我们表明,与他人相比,我们的测试方法可以实现高突变充分评分。

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