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A study of software reliability growth from the perspective of learning effects

机译:从学习效果的角度研究软件可靠性增长

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For the last three decades, reliability growth has been studied to predict software reliability in the testing/debugging phase. Most of the models developed were based on the non-homogeneous Poisson process (NHPP), and S-shaped type or exponential-shaped type of behavior is usually assumed. Unfortunately, such models may be suitable only for particular software failure data, thus narrowing the scope of applications. Therefore, from the perspective of learning effects that can influence the process of software reliability growth, we considered that efficiency in testing/debugging concerned not only the ability of the testing staff but also the learning effect that comes from inspecting the testing/debugging codes. The proposed approach can reasonably describe the S-shaped and exponential-shaped types of behaviors simultaneously, and the results in the experiment show good fit. A comparative analysis to evaluate the effectiveness for the proposed model and other software failure models was also performed. Finally, an optimal software release policy is suggested.
机译:在过去的三十年中,对可靠性的增长进行了研究,以预测测试/调试阶段的软件可靠性。所开发的大多数模型都是基于非均匀泊松过程(NHPP),通常假定行为是S形或指数形。不幸的是,这样的模型可能仅适用于特定的软件故障数据,从而缩小了应用范围。因此,从可以影响软件可靠性增长过程的学习效果的角度来看,我们认为测试/调试的效率不仅关系到测试人员的能力,而且还关系到检查测试/调试代码所产生的学习效果。所提出的方法可以合理地同时描述S形和指数形的行为类型,并且实验结果显示出良好的拟合度。还进行了比较分析,以评估提出的模型和其他软件故障模型的有效性。最后,提出了一种最佳的软件发布策略。

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