基于软件可靠性模型的最佳bug修复率和bug修复时间检测

IF 0.8 Q4 ROBOTICS
Rama Rao Narvaneni, K. Suresh Babu
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引用次数: 0

摘要

目的软件可靠性增长模型(SRGM)用于评估和预测软件系统的可靠性。除非软件进化,否则这些模型中的许多在预测未来故障方面都是有效的。设计/方法/方法本文的目的是确定纠正BFT(错误修复时间)和BFR(错误修复率)的最佳路径。此外,在实现BFR的同时,对柔性软件项目进行了检验。为了增强BFR,每个软件可交付组件中的版本标记优点降低了bug的可追溯性。软件构建的发布时间通过使用数学优化机制进行优化,如“软件可靠性增长”和“非齐次泊松过程方法”发现在目前的市场情况下,这是最重要的。构建的自动化和变化也在这篇文章中得到了解决。在这里,开发的软件没有错误或缺陷,并通过增加BFR来提高软件的质量。创意/价值在当前的市场场景中,这是最重要的。构建的自动化和变化也在这篇文章中得到了解决。在这里,开发的软件没有错误或缺陷,并通过增加BFR来提高软件的质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimum bug fixing rate and bug fixing time detection by software reliability modelling
PurposeSoftware reliability growth models (SRGMs) are used to assess and predict reliability of a software system. Many of these models are effective in predicting future failures unless the software evolves.Design/methodology/approachThis objective of this paper is to identify the best path for rectifying the BFT (bug fixing time) and BFR (bug fixing rate). Moreover, the flexible software project has been examined while materializing the BFR. To enhance the BFR, the traceability of bug is lessened by the version tag virtue in every software deliverable component. The release time of software build is optimized with the utilization of mathematical optimization mechanisms like ‘software reliability growth’ and ‘non-homogeneous Poisson process methods.’FindingsIn current market scenario, this is most essential. The automation and variation of build is also resolved in this contribution. Here, the software, which is developed, is free from the bugs or defects and enhances the quality of software by increasing the BFR.Originality/valueIn current market scenario, this is most essential. The automation and variation of build is also resolved in this contribution. Here, the software, which is developed, is free from the bugs or defects and enhances the quality of software by increasing the BFR.
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来源期刊
CiteScore
3.50
自引率
0.00%
发文量
21
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