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Software Release Time Management: How to Use Reliability Growth Models to Make Better Decisions

机译:软件发布时间管理:如何使用可靠性增长模型来做出更好的决定

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摘要

In late years, due to the significance of software application, professional testing of software becomes an increasingly important task. Once all detected faults are removed, project managers can begin to determine when to stop testing. Software reliability has important relations with many aspects of software, including the structure, the operational environment, and the amount of testing. Actually, software reliability analysis is a key factor of software quality and can be used for planning and controlling the testing resources during development. Over the past three decades, many software reliability growth models (SRGMs) have been proposed. For most traditional SRGMs, one common assumption is that the fault detection rate is a constant over time. However, the fault detection process in the operational phase is different from that in the testing phase. Thus, in this paper, we use the testing compression factor (TCF) to reflect the fact and describe the possible phenomenon. In addition, sometimes the one-to-one mapping relationship between failures and faults may not be realistic. Therefore, we also incorporate the concept of quantified ratio, not equal to 1, of faults to failures into software reliability growth modeling. We estimate the parameters of the proposed model based on real software failure data set and give a fair comparison with other SRGMs. Finally, we show how to use the proposed model to conduct software release time management
机译:在年底,由于软件应用的意义,软件的专业测试成为一个越来越重要的任务。删除所有检测到的故障后,项目经理可以开始确定何时停止测试。软件可靠性与软件的许多方面具有重要的关系,包括结构,操作环境和测试量。实际上,软件可靠性分析是软件质量的关键因素,可用于在开发过程中规划和控制测试资源。在过去的三十年中,已经提出了许多软件可靠性增长模型(SRGMS)。对于大多数传统的SRGMS来说,一个常见的假设是故障检测率随着时间的推移是恒定的。但是,操作阶段中的故障检测过程与测试阶段中的故障检测过程不同。因此,在本文中,我们使用测试压缩因子(TCF)来反映事实并描述可能的现象。此外,有时失败和故障之间的一对一映射关系可能不是逼真的。因此,我们还将量化的比率,不等于1的概念纳入故障到软件可靠性增长建模的故障。我们根据真实软件故障数据集估计所提出的模型的参数,并与其他SRGMS进行公平比较。最后,我们展示了如何使用所提出的模型来进行软件发布时间管理

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