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The Determination Of Optimal Software Release Times At Different Confidence Levels With Consideration Of Learning Effects

机译:考虑学习效果确定不同置信度下的最佳软件发布时间

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As most software reliability models do not clearly explain the variance in the mean value function of cumulative software errors, they might not be effective in deducing the confidence interval regarding the mean value function. In such cases, software developers cannot estimate the possible risk variation in software reliability by using the randomness of the mean value function, thus reducing the decision-making reliability when determining an optimal software release time. In this paper, the method of stochastic differential equations is used to build a software reliability model, which is validated based on practical data previously used in six published papers. Moreover, the estimation of the parameters of the proposed model, which can be defined as the autonomous error-detected factor and the learning factor, is also illustrated, and the results of model validation empirically confirm that the proposed model is able to account for a fairly large portion of the variance of the mean value function. Additionally, the confidence intervals of the mean value function regarding software faults are employed to assist software developers in determining the optimal release times at different confidence levels. Finally, a numerical example is given to verify the effectiveness of the proposed model.
机译:由于大多数软件可靠性模型不能清楚地解释累积软件错误的平均值函数的方差,因此它们可能无法有效地推导有关平均值函数的置信区间。在这种情况下,软件开发人员无法通过使用平均值函数的随机性来估计软件可靠性的可能风险变化,从而降低了确定最佳软件发布时间时决策的可靠性。本文采用随机微分方程方法建立了软件可靠性模型,该模型基于先前在六篇已发表论文中使用的实际数据进行了验证。此外,还说明了所提出模型的参数估计,可以将其定义为自主错误检测因子和学习因子,并且模型验证的结果凭经验证明所提出模型能够解决平均值函数方差的很大一部分。另外,采用平均值函数关于软件故障的置信区间来帮助软件开发人员确定不同置信度下的最佳发布时间。最后,通过数值例子验证了所提模型的有效性。

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