软件运行可靠性预测与分析

Chin-Yu Huang, Chu-Ti Lin, C. Sue
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引用次数: 5

摘要

在现实中,运行阶段的故障检测(或纠正)现象和软件可靠性评估与测试阶段是不同的。在操作阶段,故障排除以较慢的速度继续进行。在本文中,我们将研究在运行阶段的软件可靠性预测和测量的一些技术。我们首先回顾了一些基于非齐次泊松过程(NHPPs)的软件可靠性增长模型(SRGMs)是如何根据非齐次泊松过程模型的统一理论推导出来的。在这个总体框架下,我们不仅可以验证一些传统的SRGMs,还可以推导出一些新的SRGMs,这些SRGMs可以用于运行阶段的软件可靠性测量。也就是说,在统一理论的基础上,我们可以将多变更点的概念纳入软件可靠性建模。我们可以形式化和模拟运行阶段的故障检测过程。给出了基于实际软件故障数据的数值说明。实验结果表明,该模型能较好地反映故障检测过程可能发生的变化,为现场运行中的软件故障行为提供定量分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Software reliability prediction and analysis during operational use
In reality, the fault detection (or correction) phenomenon and software reliability estimation in the operational phase are different from that in the testing phase. The fault removal continues at a slower rate during the operational phase. In this paper, we will investigate some techniques for software reliability prediction and measurement in the operational phase. We first review how some software reliability growth models (SRGMs) based on non-homogeneous Poisson processes (NHPPs) can be readily derived based on a unified theory for NHPP models. Under this general framework, we can not only verify some conventional SRGMs but also derive some new SRGMs that can be used for software reliability measurement in the operational phase. That is, based on the unified theory, we can incorporate the concept of multiple changepoints into software reliability modeling. We can formularize and simulate the fault detection process in the operational phase. Some numerical illustrations based on real software failure data are also presented. The experimental results show that the proposed models can easily reflect the possible changes of fault detection process and offer quantitative analysis on software failure behavior in field operation.
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