软件可靠性分析中故障检测和故障纠正过程建模的集成框架

J. Lo
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引用次数: 3

摘要

故障检测和故障纠正是保证软件质量的关键环节。在本文中,我们对传统的软件可靠性增长模型(SRGMs)提出了一些改进,通过消除一些不现实的假设来描述实际的软件开发过程。这些模型大多侧重于故障检测过程,而对故障纠正过程的建模没有给予同等的优先权。但是,大多数潜在的软件错误可能在检测到之后很长一段时间内仍未得到纠正,这增加了它们的影响。剩余的软件故障通常是影响软件质量的最不可靠的原因之一。因此,我们开发了故障检测和故障纠正过程建模的一般框架。此外,我们还分析了应用延迟-非齐次泊松过程(NHPP)模型的效果。最后,通过数值算例说明了检测与校正过程相结合的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An integrated framework of the modeling of failure-detection and fault-correction processes in software reliability analysis
The failure-detection and fault-correction are critical processes in attaining good performance of software quality. In this paper, we propose several improvements on the conventional software reliability growth models (SRGMs) to describe actual software development process by eliminating some unrealistic assumptions. Most of these models have focused on the failure detection process and not given equal priority to modeling the fault correction process. But, most latent software errors may remain uncorrected for a long time even after they are detected, which increases their impact. The remaining software faults are often one of the most unreliable reasons for software quality. Therefore, we develop a general framework of the modeling of the failure detection and fault correction processes. Furthermore, we also analyze the effect of applying the delay-time non-homogeneous Poisson process (NHPP) models. Finally, numerical examples are shown to illustrate the results of the integration of the detection and correction process.
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