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A novel approach for software reliability analysis of digital instrumentation and control systems in nuclear power plants

机译:核电站数字仪表和控制系统的软件可靠性分析新方法

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This work presents a novel, integrated approach to the reliability analysis of digital instrumentation and control systems by incorporating Bayesian belief network (BBN), human reliability analysis (HRA), and common cause failure (CCF) modeling techniques. The Bayesian and HRA-Aided Method for the Reliability Analysis of Software (BAHAMAS) provides consideration of software development life cycle (SDLC) processes and their influence on software reliability. It is assumed that software failures can be traced to human errors in the SDLC, which can be modeled with HRA methods. Additionally, a system's reliability can be predicted based on how its SDLC quality compares with existing similar systems. A case study demonstrates the quantification of results from a hazard analysis of a digital reactor trip system. The case study shows agreement with values reported in the literature. BAHAMAS is shown to be a flexible tool whose application is designed to conveniently incorporate with conventional probability risk assessments. (C) 2021 Elsevier Ltd. All rights reserved.
机译:这项工作提出了一种新颖的,通过纳入贝叶斯信仰网络(BBN),人的可靠性分析(HRA),常见的原因失败(CCF)建模技术,提供了数字仪表和控制系统的可靠性分析的新颖,综合方法。贝叶斯和HRA辅助软件可靠性分析的方法(巴哈马)提供了对软件开发生命周期(SDLC)流程的考虑及其对软件可靠性的影响。假设软件故障可以追溯到SDLC中的人为错误,这可以用HRA方法进行建模。另外,可以基于其SDLC质量如何与现有的类似系统进行比较来预测系统的可靠性。案例研究表明,来自数字反应堆跳闸系统的危害分析的量化。案例研究显示了文献中报告的价值观的协议。巴哈马斯被认为是一种灵活的工具,其应用程序旨在方便地包含传统概率风险评估。 (c)2021 elestvier有限公司保留所有权利。

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