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Simulation-based FDP on6; FCP analysis with queueing models

机译:基于仿真的FDP on6;使用排队模型进行FCP分析

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Continuous efforts have been devoted to software reliability modeling evolution over the past decades in order to adapt to the practical complex software testing environments. Many models have been proposed to describe the software fault related process. These software reliability growth models (SRGMs) have evolved from describing one fault detection process (FDP) into incorporating fault correction process (FCP) as well, in order to provide higher accuracy with more information. To provide mathematical tractability, models need to have closed form, with restrictive assumptions in a narrow sense. This in turn confines their capability for general applications. Alternatively, in this paper a general simulation based queueing modeling framework is proposed to describe FDP and FCP, with resource factors from practical software testing incorporated. Good simulation performance is observed with a numerical example. Furthermore, release time and debugger staffing issues are investigated with a revised cost model. The analysis is conducted through a simulation optimization approach.
机译:在过去的几十年中,一直致力于软件可靠性建模的发展,以适应实际的复杂软件测试环境。已经提出了许多模型来描述与软件故障相关的过程。这些软件可靠性增长模型(SRGM)已从描述一种故障检测过程(FDP)演变为并入了故障校正过程(FCP),以提供更高的准确性和更多信息。为了提供数学上的易处理性,模型必须具有封闭形式,并在狭义上具有限制性假设。反过来,这限制了它们在一般应用中的功能。另外,在本文中,提出了一个基于通用仿真的排队建模框架来描述FDP和FCP,并结合了来自实际软件测试的资源因素。通过数值示例可以观察到良好的仿真性能。此外,还使用修订后的成本模型来研究发布时间和调试器人员配备问题。通过模拟优化方法进行分析。

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