核电厂I&C可靠性与安全性的马尔可夫模型:工具与技术选择的优化

V. Kharchenko, V. Butenko, O. Odarushchenko, Elena Odarushchenko
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引用次数: 5

摘要

马尔可夫链广泛应用于安全关键系统的定量分析。马尔可夫链的更大应用几乎没有障碍:计算额外的硬件和软件组件(或FPGA)增加了模型状态空间和复杂的分析,非数值复杂的用户可能会发现很难在各种数值方法和工具之间做出决定,以确定最准确的应用程序。获得高可信度的建模结果成为一项重要的任务。在分析若干马尔可夫链参数的基础上,提出了一种基于度量的求解方法。开发了三种工具选择的优化标准,以支持在广泛的适用软件之间进行决策。提出的方法和标准被应用为逐步工具和技术选择程序,旨在降低风险,提高准确性和优化马尔可夫链分析所需的时间。本文介绍了应用优化工具和技术选择程序对工业核电站仪表控制系统进行可靠性和安全性评估的实例研究。
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Markov's Modeling of NPP I&C Reliability and Safety: Optimization of Tool-and-Technique Selection
Markov's chains are widely applied in quantitative analysis of safety-critical systems. There are few roadblocks for greater application of the Markov's chains: accounting the additional hardware and software component (or FPGA) increases the model state-space and complicates analysis, the non-numerically sophisticated user may find it difficult to decide between the variety of numerical methods and tools to determine the most accurate for their application. Obtaining the high trusted modeling results becomes a nontrivial task. We present the metric-based approach for selection of the applicable solution technique based on the analysis of several Markov chain parameters. Three optimization criteria for informed tool selection were developed to support the decision-making between the wide set of applicable software. Presented approach and criteria are applied as the stepwise tools-and-techniques selection procedure that aims to reduce the risks, increase an accuracy and optimize time needed for Markov's chains analysis. Paper presents the case study of reliability and safety assessment for industrial Nuclear Power Plant Instrumentation and Control system using the optimized tools-and-techniques selection procedure.
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