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C0 COVERAGE-MEASURE AND TESTING-DOMAIN METRICS BASED ON A SOFTWARE RELIABILITY GROWTH MODEL

机译:基于软件可靠性增长模型的C0覆盖率度量和测试范围指标

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摘要

Generally, a software development manager is performing the testing-progress management by using various CASE tools. These CASE tools support testing activities of Windows applications or embedded software systems. Then, by using various testing coverage-measures, the testing-progress management can be recognized visually. However, in the system-testing phase, it is impossible to measure them of software systems which have been becoming large-scale and complicated recently. Therefore, the manager has to determine the testing termination time in consideration of the convergence situation of the cumulative number of detected faults and the prespecified delivery time to the users. These determination method have ambiguity based on the manager's experience or intuition. In this paper, we investigate the relationship between the testing-domain rate derived from a testing-domain dependent software reliability growth model and the testing-path coverage. Then, we show that the testing-domain rate, which is defined as the increasing ratio of the testing-paths in the modules and functions in the software system to be influenced by executed test-cases, is useful as an alternative measure of testing-coverage metrics. Further, this model is applied to the fault data observed in an actual software project, and the comparisons of goodness-of-fit with the conventional software reliability growth models are performed. Finally, in numerical illustrations, we discuss the software reliability analysis and the usefulness of the testing-domain rate, and propose a new testing-path coverage rate.
机译:通常,软件开发经理通过使用各种CASE工具来执行测试进度管理。这些CASE工具支持Windows应用程序或嵌入式软件系统的测试活动。然后,通过使用各种测试覆盖率措施,可以直观地识别测试进度管理。但是,在系统测试阶段,无法对最近变得大规模且复杂的软件系统进行测量。因此,管理者必须考虑到检测到的故障的累积数量和给用户的预定交付时间的收敛情况来确定测试终止时间。这些确定方法基于经理的经验或直觉而有歧义。在本文中,我们研究了依赖于测试域的软件可靠性增长模型得出的测试域速率与测试路径覆盖率之间的关系。然后,我们表明测试域速率(定义为软件系统中模块和功能中测试路径受执行的测试用例影响的增加比率)可以用作测试的替代方法-覆盖率指标。此外,将该模型应用于实际软件项目中观察到的故障数据,并进行拟合优度与常规软件可靠性增长模型的比较。最后,在数值说明中,我们讨论了软件可靠性分析和测试域速率的实用性,并提出了一种新的测试路径覆盖率。

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