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首页> 外文期刊>Annals of nuclear energy >Availability analysis of safety-critical and control systems of NPP using stochastic modeling
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Availability analysis of safety-critical and control systems of NPP using stochastic modeling

机译:使用随机造型的NPP安全关键和控制系统的可用性分析

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摘要

Non-functional requirements are essentially important and play vital role for applications ranging from safety-critical systems (SCS) to simple gaming applications to ensure their quality. SCS demands not only for safe and reliable systems but systems those remain safe and available while under attacks. Availability analysis approaches include, but are not limited to cluster technique, Markov based chain models, Reliability Block Diagrams (RBD), Fault Tree Analysis (FTA) and Flow Network. The classical approaches fail to account for the comprehensive and accurate analysis of the diverse characteristics such as temporal behavior of systems, uncertainty in system behavior and failure data, functional dependencies among components and multiple failure modes for components or systems. This paper presents a novel approach for the availability analysis of a Digital Feed Water Control System (DFWCS) of nuclear power plant, which considers the maintenance and repair of the main-steam safety valves. The approach will be useful when no operational profile data is available for that. The system has been modeled using Stochastic Petri Net capturing all the system requirements along with the partial failures of its subsystems and common-cause failures and analyzed using TimeNet tool. The proposed methodology proves to be efficient and overcomes the limitations of the traditional approaches and the Markov model approach as it computes the state-transition probabilities, rather than assuming or qualitatively assessing it. (C) 2020 Elsevier Ltd. All rights reserved.
机译:非功能性要求基本上是重要的,并且对应用于从安全关键系统(SCS)到简单的游戏应用来确保其质量的应用来说至关重要。 SCS不仅要求安全可靠的系统,而且在攻击时,这些系统仍然可以安全和可用。可用性分析方法包括但不限于集群技术,基于Markov的链式模型,可靠性框图(RBD),故障树分析(FTA)和流量网络。经典方法无法考虑对系统行为,系统行为和故障数据的不确定性等多种特征的全面和准确分析,组件或系统的组件之间的功能依赖性以及多种故障模式。本文介绍了核电站数字饲料水控制系统(DFWCS)的可用性分析的新方法,该方法考虑了主蒸汽安全阀的维护和修复。当没有可操作的配置文件数据时,该方法将是有用的。该系统已使用随机培养网进行建模,捕获所有系统要求以及其子系统的部分故障和常见故障,并使用TimeNet工具分析。所提出的方法证明是有效的,克服传统方法和马尔可夫模型方法的局限性,因为它计算了状态过渡概率,而不是假设或定性评估它。 (c)2020 elestvier有限公司保留所有权利。

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