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A Replicated Quantitative Analysis of Fault Distributions in Complex Software Systems

机译:复杂软件系统中故障分布的重复定量分析

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To contribute to the body of empirical research on fault distributions during development of complex software systems, a replication of a study of Fenton and Ohlsson is conducted. The hypotheses from the original study are investigated using data taken from an environment that differs in terms of system size, project duration, and programming language. We have investigated four sets of hypotheses on data from three successive telecommunications projects: 1) the Pareto principle, that is, a small number of modules contain a majority of the faults (in the replication, the Pareto principle is confirmed), 2) fault persistence between test phases (a high fault incidence in function testing is shown to imply the same in system testing, as well as prerelease versus postrelease fault incidence), 3) the relation between number of faults and lines of code (the size relation from the original study could be neither confirmed nor disproved in the replication), and 4) fault density similarities across test phases and projects (in the replication study, fault densities are confirmed to be similar across projects). Through this replication study, we have contributed to what is known on fault distributions, which seem to be stable across environments.
机译:为了促进复杂软件系统开发过程中故障分布的实证研究,对Fenton和Ohlsson的研究进行了复制。原始研究的假设是使用来自环境的数据进行调查的,该环境在系统大小,项目持续时间和编程语言方面均不同。我们研究了来自三个连续电信项目的数据的四组假设:1)Pareto原理,即,少数模块包含大多数故障(在复制中,确认了Pareto原理),2)故障测试阶段之间的持久性(在功能测试中,较高的故障发生率表明在系统测试中也是如此,以及发行前与发行后的故障发生率),3)故障数量与代码行之间的关系(来自代码行的大小关系)原始研究既不能在复制中得到证实或反对,也不能得到证实; 4)测试阶段和项目之间的故障密度相似性(在复制研究中,已确认项目之间的故障密度相似)。通过这项复制研究,我们为故障分布方面的已知问题做出了贡献,该问题分布在整个环境中似乎都很稳定。

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