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A software reliability growth model from testing to operation

机译:从测试到操作的软件可靠性增长模型

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This paper presents a SRGM (software reliability growth model) from testing to operation based on NHPP (nonhomogeneous Poisson process). Although a few research projects have been devoted to the differences between testing environment and operational environment, consideration of the variation of environmental influence factors along testing time in the existing models is limited. The model in this paper is the first scheme of a few NHPP models which take environmental factors experimented from actual failure data as a function of testing time. FDR (fault detection rate) is usually used to measure the effectiveness of fault detection by test techniques and test cases. A bell-shaped FDR function is proposed which integrate both environmental factors and inherent FDR per fault. A NHPP SRGM from testing to operation that incorporates environmental factors called TOE-SRGM is built which integrates FDR of testing phase and the proposed FDR function of operational phase. TOE-SRGM is evaluated using a set of software failure data. The results show that TOE-SRGM fits the failure data better than G-O model and PZ-SRGM.
机译:本文介绍了从基于NHPP(非均匀泊松过程)测试到操作的SRGM(软件可靠性增长模型)。虽然一些研究项目已经致力于测试环境和操作环境之间的差异,但是有限地考虑沿着现有模型中的测试时间的环境影响因素的变化。本文中的模型是几种NHPP模型的第一种方案,该模型采用从实际故障数据实验的环境因素作为测试时间的函数。 FDR(故障检测率)通常用于通过测试技术和测试用例测量故障检测的有效性。提出了一个钟形FDR功能,其整合了环境因素和固有的FDR每故障。将NHPP SRGM从测试到包含称为TOE-SRGM的环境因素的操作,这是集成了测试阶段的FDR和运行阶段的建议FDR功能。使用一组软件故障数据进行评估脚趾SRGM。结果表明,Toe-SRGM比G-O模型和PZ-SRGM更好地拟合故障数据。

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