模块化软件系统测试资源的优化分配

Chin-Yu Huang, J. Lo, S. Kuo, Michael R. Lyu
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引用次数: 26

摘要

本文基于具有广义逻辑测试工作量函数的软件可靠性增长模型,研究了模块化软件系统在测试阶段的三个最优资源分配问题:1)给定一定的测试工作量和期望的可靠性目标时,剩余故障最小化;2)当给定特定数量的剩余故障和期望的可靠性目标时,最小化所需的测试工作量;3)在给定剩余故障数量和期望可靠性目标的情况下,成本最小化。提出了几种实用的基于拉格朗日乘子法的优化算法,并给出了数值算例。我们的方法为以可靠性为目标的测试资源分配优化提供了实用的方法。此外,我们还介绍了测试资源的控制问题,并比较了不同的资源分配方法。最后,我们演示了如何在集成测试中使用这些分析方法。利用所提出的算法,项目经理可以在软件模块和集成测试中轻松有效地分配有限的测试资源,从而达到最高的可靠性目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal allocation of testing resources for modular software systems
In this paper, based on software reliability growth models with generalized logistic testing-effort function, we study three optimal resource allocation problems in modular software systems during the testing phase: 1) minimization of the remaining faults when a fixed amount of testing-effort and a desired reliability objective are given; 2) minimization of the required amount of testing-effort when a specific number of remaining faults and a desired reliability objective are given; and 3) minimization of the cost when the number of remaining faults and a desired reliability objective are given. Several useful optimization algorithms based on the Lagrange multiplier method are proposed and numerical examples are illustrated. Our methodologies provide practical approaches to the optimization of testing-resource allocation with a reliability objective. In addition, we also introduce the testing-resource control problem and compare different resource allocation methods. Finally, we demonstrate how these analytical approaches can be employed in the integration testing. Using the proposed algorithms, project managers can allocate limited testing-resource easily and efficiently and thus achieve the highest reliability objective during software module and integration testing.
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