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首页> 外文期刊>Nuclear Technology >Research on the Cognitive Reliability Model of DCS+SOP in the Ling'ao Phase II Nuclear Power Plant's Main Control Room
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Research on the Cognitive Reliability Model of DCS+SOP in the Ling'ao Phase II Nuclear Power Plant's Main Control Room

机译:Ling'ao II期核电站主控室DCS + SOP认知可靠性模型研究

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摘要

The digital control system (DCS)+state-oriented procedure (SOP) system adopted by China's Ling 'ao Phase II nuclear power plant's main control room requires changes to the cognitive process, behavior mode, and error mode while triggering new human factors. Therefore, in this paper we present a cognitive reliability model for the DCS+SOP system in the Ling'ao Phase II Nuclear Power Plant's main control room and conduct a human reliability analysis. The model is based on the cognitive process with respect to considering the coordinator s accident recovery effect and obtaining the method of calculating cognitive reliability. We determine impact factors for the three cognitive stages of the operator's and the coordinator's diagnosis, decision making, and operation. We obtain the operator's and the coordinator's weights for each process through an analytic hierarchy process. Using methods of simulation and analyzing the experiment data, we obtain revised coefficients for the cognitive reliability model. Additionally, the trend of the simulation curve indicates the rationality of the model. Finally, we provide an example based on the proposed cognitive reliability model. The process of analyzing the example demonstrates that this method provides a feasible analysis method for the cognitive reliability of the DCS+SOP system in the main control room.
机译:中国凌l阶层核电站采用的数字控制系统(DCS)+状态导向程序(SOP)系统的主控室需要改变认知过程,行为模式和误差模式,同时引发新的人为因素。因此,在本文中,我们为凌岛第二阶段核电站主控室的DCS + SOP系统提供了一种认知可靠性模型,并进行人的可靠性分析。该模型基于考虑协调器的事故恢复效果以及获得计算认知可靠性的方法的认知过程。我们确定运营商的三个认知阶段的影响因素和协调员的诊断,决策和运营。通过分析层次结构,我们为每个进程获得操作员和协调员的权重。使用模拟方法和分析实验数据,我们获得了认知可靠性模型的修订系数。另外,仿真曲线的趋势表示模型的合理性。最后,我们提供了一个基于所提出的认知可靠性模型的示例。分析该实施例的过程证明了该方法提供了可行的分析方法,用于主控制室中DCS + SOP系统的认知可靠性。

著录项

  • 来源
    《Nuclear Technology》 |2021年第1期|74-93|共20页
  • 作者单位

    China Nuclear Power Design Company LTD State Key Laboratory of Nuclear Power Safety Monitoring Technology and Equipment Shenzhen Guangdong Province China 518045;

    China Nuclear Power Design Company LTD State Key Laboratory of Nuclear Power Safety Monitoring Technology and Equipment Shenzhen Guangdong Province China 518045;

    China Nuclear Power Design Company LTD State Key Laboratory of Nuclear Power Safety Monitoring Technology and Equipment Shenzhen Guangdong Province China 518045;

    Hunan Institute of Technology School of Safety and Environment Engineering Heng Yang HuNan Province China 421002;

    Hunan Institute of Technology School of Safety and Environment Engineering Heng Yang HuNan Province China 421002;

    Hunan Institute of Technology School of Safety and Environment Engineering Heng Yang HuNan Province China 421002;

    Hunan Institute of Technology School of Safety and Environment Engineering Heng Yang HuNan Province China 421002;

    Hunan Institute of Technology School of Safety and Environment Engineering Heng Yang HuNan Province China 421002;

    Hunan Institute of Technology School of Safety and Environment Engineering Heng Yang HuNan Province China 421002;

    Hunan Institute of Technology School of Safety and Environment Engineering Heng Yang HuNan Province China 421002;

    Hunan Institute of Technology School of Safety and Environment Engineering Heng Yang HuNan Province China 421002;

    China Nuclear Power Design Company LTD State Key Laboratory of Nuclear Power Safety Monitoring Technology and Equipment Shenzhen Guangdong Province China 518045;

    China Nuclear Power Design Company LTD State Key Laboratory of Nuclear Power Safety Monitoring Technology and Equipment Shenzhen Guangdong Province China 518045;

    China Nuclear Power Design Company LTD State Key Laboratory of Nuclear Power Safety Monitoring Technology and Equipment Shenzhen Guangdong Province China 518045;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    DCS+SOP system; cognitive reliability; factor weights;

    机译:DCS + SOP系统;认知可靠性;因子重量;

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