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Component-based software system reliability allocation and assessment based on ANP and petri

机译:基于ANP和Petri的基于组件的软件系统可靠性分配与评估

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摘要

There are various dependencies in the component-based software systems. ANP can describe the complex structure of system using network representation for system structure. Therefore, it can assign reliability target to each component by comparing the relative importance to the users and considering constraints cost. However, ANP method can only estimate software system reliability statically and indirectly in the design stage. During the service process of software, how to assess the software system reliability, and further to validate the rationality of software reliability allocation in the design stage are dynamic problems, which require a dynamic method. In this paper, firstly, the dynamics model for state changes of software system reliability over time is developed using Petri network, then the software system reliability can be assessed dynamically combined with the dependency graph of components. Finally, the allocation and assessment for component-based software system reliability by ANP combining Petri network is presented and discussed by one example.
机译:在基于组件的软件系统中存在各种依赖性。 ANP可以使用网络表示来描述系统的复杂结构。因此,它可以通过比较对用户的相对重要性并考虑约束成本来为每个组件分配可靠性目标。但是,ANP方法只能在设计阶段静态和间接地估计软件系统的可靠性。在软件的服务过程中,如何评估软件系统的可靠性,并在设计阶段进一步验证软件可靠性分配的合理性是动态问题,需要采用动态方法。本文首先利用Petri网建立了软件系统可靠性随时间变化的动力学模型,然后结合组件依赖图对软件系统的可靠性进行了动态评估。最后,通过一个实例提出并讨论了基于Petri网的ANP对基于组件的软件系统可靠性的分配和评估。

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