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Enhancing software reliability modeling and prediction through the introduction of time-variable fault reduction factor

机译:通过引入时变故障减少因子来增强软件可靠性建模和预测

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Over the past three decades, many software reliability models with different parameters, reflecting various testing characteristics, have been proposed for estimating the reliability growth of software products. We have noticed that one of the most important parameters controlling software reliability growth is the fault reduction factor (FRF) proposed by Musa. FRF is generally defined as the ratio of net fault reduction to failures experienced. During the software testing process, FRF could be influenced by many environmental factors, such as imperfect debugging, debugging time lag, etc. Thus, in this paper, we first analyze some real data to observe the trends of FRF, and consider FRF to be a time-variable function. We further study how to integrate time-variable FRF into software reliability growth modeling. Some experimental results show that the proposed models can improve the accuracy of software reliability estimation. Finally, sensitivity analyses of various optimal release times based on cost and reliability requirements are discussed. The analytic results indicate that adiustine the valite of FRF mav affect the release time as well as the develoDment cost.
机译:在过去的三十年中,已经提出了许多具有不同参数,反映各种测试特性的软件可靠性模型,以估计软件产品的可靠性增长。我们已经注意到,控制软件可靠性增长的最重要参数之一是Musa提出的故障减少因子(FRF)。 FRF通常定义为净故障减少与经历的故障的比率。在软件测试过程中,FRF可能受到不完善的调试,调试时间滞后等许多环境因素的影响。因此,在本文中,我们首先分析一些实际数据以观察FRF的趋势,并认为FRF是时变函数。我们将进一步研究如何将时变FRF集成到软件可靠性增长模型中。实验结果表明,所提出的模型可以提高软件可靠性估计的准确性。最后,讨论了基于成本和可靠性要求的各种最佳释放时间的敏感性分析。分析结果表明,氟尿嘧啶(FRF)的缬氨酸的阴阳联苯酯影响释放时间以及开发成本。

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