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Reliability Analysis of Component Software Based on Stochastic Petri Nets

机译:基于随机Petri网的组件软件可靠性分析

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The models suggested at present have certain application conditions and ranges, and most of them are not able to satisfy the requirements of complicated and volatile application environments. This paper presents a method based on stochastic Petri nets (SPNs) that evaluates component software reliability at the early stages of software development. The reliability model built with that method can describe the process of dynamic changes of software well and it also considers the factors that affect software reliability by analyzing the characteristic of software architecture. The major drawback of SPN models is the state space explosion with increasing model complexity. In this paper, the problem is resolved by the decomposition of software architecture and one kind of decomposition technique introduced by reference [1]. Finally, we illustrate and discuss the numerical reliability results obtained from the proposed method. It has been shown that the suggested method provides a powerful means of analyzing software reliability after software running for a period of time.
机译:目前建议的模型具有一定的应用条件和范围,并且大多数不能满足复杂多变的应用环境的要求。本文提出了一种基于随机Petri网(SPN)的方法,该方法可以在软件开发的早期阶段评估组件软件的可靠性。用该方法建立的可靠性模型可以很好地描述软件动态变化的过程,并通过分析软件体系结构的特征来考虑影响软件可靠性的因素。 SPN模型的主要缺点是随着模型复杂性的增加而发生的状态空间爆炸。本文通过软件体系结构的分解和参考文献[1]介绍的一种分解技术解决了该问题。最后,我们说明并讨论了从所提出的方法获得的数值可靠性结果。已经表明,所建议的方法提供了在软件运行一段时间后分析软件可靠性的有力手段。

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    《》|2007年|296-301|共6页
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    Zhu; Lianzhang; Li; Yanchen;

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