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A Study on the operator's communication pattern characteristics under abnormal operating situation of nuclear power plants

机译:核电厂异常运行情况下操作员的通信模式特征研究

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The quality of a probabilistic safety assessment (PSA) has become more important and a human reliability analysis (HRA) is known as a major contributor to the uncertainty of a PSA. As a part of enhancing the HRA quality, a study was initiated to find out characteristics of communication pattern and to evaluate communication quality of the operators of nuclear power plants. Korea Atomic Energy Research Institute (KAERI) is developing evaluation methods for the effect of human-induced events on risk/performance. This paper describes a study on the operator's communication pattern characteristics under abnormal operating situation of nuclear power plants. The study was carried out in four stages; 1) Video recording 2) Audio scripting 3) Message Classification 4) Communication Pattern Analysis. We recorded eight abnormal simulator training programs from younggwang nuclear power plant training center. After that we performed message classification and carried out communication pattern analysis. We compared communication patterns of abnormal operating situation with emergency operating situation.As results of analysis, the role of SRO (senior reactor operator) under abnormal operating situation was decreased than the activities under emergency operating situation because each operator (reactor operator, turbine operator, safety supervisor) in main control room (MCR) performs the activity to control by himself with corresponding field engineers with his basic knowledge of the system. On the other hand, the operator's decision making processes and activities under abnormal operating situation were dramatically increased than the emergency operating situation.
机译:概率安全评估(PSA)的质量变得越来越重要,而人类可靠性分析(HRA)被认为是PSA不确定性的主要贡献者。作为提高HRA质量的一部分,开始了一项研究,以找出通信模式的特征并评估核电厂运营商的通信质量。韩国原子能研究所(KAERI)正在开发评估方法,以评估人为事件对风险/绩效的影响。本文描述了核电厂异常运行情况下运营商通信模式特征的研究。该研究分四个阶段进行: 1)录像2)音频脚本3)消息分类4)通信模式分析。我们从永光核电站培训中心记录了八个异常模拟器培训计划。之后,我们进行了消息分类并进行了通信模式分析。我们将异常运行状况与紧急运行状况的通信模式进行了比较。分析结果,异常运行状况下的SRO(高级反应堆操作员)比紧急运行状况下的活动减少了,因为每个操作员(反应堆操作员,涡轮机操作员,主控制室(MCR)中的安全主管)将根据他对系统的基本知识,自行与相应的现场工程师进行控制。另一方面,与紧急情况相比,异常情况下的操作者的决策过程和活动大大增加。

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