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Flexible software reliability growth modeling based on stochastic differential equations for distributed development environment

机译:分布式开发环境中基于随机微分方程的灵活软件可靠性增长建模

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摘要

At present, software development environment has been changing into new development paradigm in such client/server systems and distributed development by using network computing technologies. Software systems produced in such distributed one tend to increase in size and complexity. If the size of the software system is large, the number of faults detected during the testing phase becomes large, and the change of the number of faults which are detected and removed through each debugging becomes sufficiently small compared with the initial fault content at the beginning of the testing. In this paper, we propose a software reliability growth model describing a fault-detection process during the system testing phase of the distributed development environment by applying a mathematical technique of stochastic differential equations of an Ito type. Considering the conventional stochastic differential equation model for distributed development environment, we derive a flexible stochastic differential equation model, arid show numerical examples with sensitivity analyses on the weight parameter.
机译:目前,软件开发环境已经转变为这种客户/服务器系统中的新开发范例,并且已经通过使用网络计算技术进行分布式开发。在这样的分布式系统中产生的软件系统趋于增加大小和复杂度。如果软件系统的大小很大,则在测试阶段检测到的故障数量会变大,并且与开始时的初始故障内容相比,通过每次调试检测并删除的故障数量的变化会变得足够小。测试。在本文中,我们提出了一种软件可靠性增长模型,该模型通过应用Ito型随机微分方程的数学技术来描述分布式开发环境的系统测试阶段的故障检测过程。考虑到分布式开发环境下的常规随机微分方程模型,推导了一种灵活的随机微分方程模型,并给出了对权重参数进行敏感性分析的数值例子。

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