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Transition-based testability analysis for reactive systems

机译:反应系统基于过渡的可测试性分析

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Reactive systems are often designed as two parts: computation part and control part. The computation part is modeled by operator diagrams, while the control part is modeled by transition-based models. In this paper, we concentrate on analyzing testability of control part by basing upon transition-based models. We first transform transition-based models into Markov chains by augmenting probability information. Then, testability measures are proposed from Markov chains as an estimate of testing effort for reaching state coverage and path coverage. The approach is applied to a case study and the obtained measures are compared to the testing effort required by a test generation tool. The results shows some interesting perspectives.
机译:反应系统通常被设计为两个部分:计算部分和控制部分。计算部分由操作员图建模,而控制部分由基于过渡的模型建模。在本文中,我们集中在基于过渡的模型的基础上分析控制部件的可测试性。我们首先通过增加概率信息将基于过渡的模型转换为马尔可夫链。然后,从马尔可夫链中提出了可测性度量,作为达到状态覆盖范围和路径覆盖范围的测试工作量的估计。该方法应用于案例研究,并将获得的度量与测试生成工具所需的测试工作进行比较。结果显示了一些有趣的观点。

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