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首页> 外文期刊>The Journal of Systems and Software >Optimal test activity allocation for covariate software reliability and security models
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Optimal test activity allocation for covariate software reliability and security models

机译:适用于协变软件可靠性和安全模型的最佳测试活动分配

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Traditional software reliability growth models enable quantitative assessment of the software testing process by characterizing the fault detection in terms of testing time or effort. However, the majority of these models do not identify specific testing activities underlying fault discovery and thus can only provide limited guidance on how to incrementally allocate effort. Although there are several novel studies focused on covariate software reliability growth models, they are limited to model development, application, and assessment. This paper presents a non-homogeneous Poisson process software reliability growth model incorporating covariates based on the discrete Cox proportional hazards model. An efficient and stable expectation conditional maximization algorithm is applied to identify the model parameters. An optimal test activity allocation problem is formulated to maximize fault discovery. The proposed method is illustrated through numerical examples on two data sets.
机译:传统的软件可靠性增长模型使软件测试过程能够通过在测试时间或努力方面表征故障检测来实现对软件测试过程的定量评估。然而,大多数这些模型不确定故障发现的特定测试活动,因此只能为如何逐步分配努力提供有限的指导。虽然有几项专注于协变软件可靠性增长模型的新型研究,但它们仅限于模型开发,应用和评估。本文介绍了基于离散COX比例危害模型的共同均相泊松过程软件可靠性增长模型。应用有效且稳定的期望条件最大化算法来识别模型参数。最佳测试活动分配问题被配制为最大化故障发现。所提出的方法通过两个数据集上的数值示例来示出。

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