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Unified framework to assess software reliability and determine optimal release time in presence of fault reduction factor, error generation and fault removal efficiency

机译:统一的框架,用于评估软件可靠性,并在存在故障减少系数、错误生成和故障消除效率的情况下确定最佳发布时间

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摘要

Abstract Reliability of software products can be affected by several factors faced during the testing phase such as the generation of additional faults during the fault removal process, inefficiency or inaccuracy of team in completely removing faults, probability by which faults are removed, and difference between the number of failures and faults removed. These conditions have been termed as error generation, fault removal efficiency (FRE), imperfect debugging parameter, and fault reduction factor (FRF) respectively. In this paper, we have proposed a unified software reliability growth model (SRGM) to assess the impact of these parameters on the reliability and release schedule software. The error generation, imperfect debugging, and FRE parameters have been assumed to be constant while FRF is time-dependent modeled by exponential, Weibull, and delayed s-shaped distribution functions. These models can be represented using a single unified SRGM that reduces the difficulty of model selection. The special cases have been validated on two real-life fault datasets of Tandem computers and radar systems. Performance measures, the goodness of fit, and boxplot analysis show that the model fits the dataset very well. Further, the model that gives the best fit has been used for release planning for determining release and warranty time that minimizes development cost. The paper also analyses the sensitivity of cost parameters, the impact of change in error generation, FRE, FRF, and the reliability constraint on optimal timings. The results are highly encouraging for software managers and engineers and add value to the existing literature.
机译:摘要 软件产品的可靠性可能受到测试阶段面临的多种因素的影响,如故障消除过程中产生的额外故障、团队完全排除故障的效率低下或不准确、故障消除的概率、故障次数与排除故障次数的差异等。这些条件分别称为错误生成、故障消除效率 (FRE)、调试参数不完善和故障减少因子 (FRF)。在本文中,我们提出了一个统一的软件可靠性增长模型(SRGM)来评估这些参数对可靠性和发布计划软件的影响。假设错误生成、不完美调试和 FRE 参数是恒定的,而 FRF 则由指数、Weibull 和延迟 S 形分布函数建模。这些模型可以使用单个统一的 SRGM 来表示,从而降低模型选择的难度。这些特殊情况已经在串联计算机和雷达系统的两个真实故障数据集上进行了验证。性能度量、拟合优度和箱线图分析表明,该模型与数据集拟合得非常好。此外,提供最佳拟合度的模型已被用于发布计划,以确定发布和保修时间,从而最大限度地降低开发成本。本文还分析了成本参数的敏感性、误差生成变化的影响、FRE、FRF以及可靠性对最优时序的约束。这些结果对软件经理和工程师来说非常令人鼓舞,并为现有文献增加了价值。

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