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Reliability modeling of safety-critical network communication in a digitalized nuclear power plant

机译:数字化核电厂中安全关键型网络通信的可靠性建模

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The Engineered Safety Feature-Component Control System (ESF-CCS), which uses a network communication system for the transmission of safety-critical information from group controllers (GCs) to loop controllers (LCs), was recently developed. However, the ESF-CCS has not been applied to nuclear power plants (NPPs) because the network communication failure risk in the ESF-CCS has yet to be fully quantified. Therefore, this study was performed to identify the potential hazardous states for network communication between GCs and LCs and to develop quantification schemes for various network failure causes. To estimate the risk effects of network communication failures in the ESF-CCS, a fault-tree model of an ESF-CCS signal failure in the containment spray actuation signal condition was developed for the case study. Based on a specified range of periodic inspection periods for network modules and the baseline probability of software failure, a sensitivity study was conducted to analyze the risk effect of network failure between GCs and LCs on ESF-CCS signal failure. This study is expected to provide insight into the development of a fault-tree model for network failures in digital I&C systems and the quantification of the risk effects of network failures for safety-critical information transmission in NPPs. (C) 2015 Elsevier Ltd. All rights reserved.
机译:最近开发了工程安全功能部件控制系统(ESF-CCS),该系统使用网络通信系统将安全关键信息从组控制器(GC)传输到回路控制器(LC)。但是,ESF-CCS尚未应用于核电厂(NPP),因为ESF-CCS中的网络通信失败风险尚未完全量化。因此,进行这项研究是为了确定GC和LC之间网络通信的潜在危险状态,并针对各种网络故障原因制定量化方案。为了估计ESF-CCS中网络通信故障的风险影响,针对案例研究,建立了安全壳喷淋致动信号条件下ESF-CCS信号故障的故障树模型。根据网络模块的指定定期检查周期范围和软件故障的基线概率,进行了敏感性研究,以分析GC和LC之间的网络故障对ESF-CCS信号故障的风险影响。预期该研究将为数字I&C系统中网络故障的故障树模型的开发以及NPP中对安全至关重要的信息传输的网络故障的风险影响的量化提供深刻见解。 (C)2015 Elsevier Ltd.保留所有权利。

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