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Lee, Seung Jun
Nuclear Safety Assessment and Plant HMI Evolution Lab.
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AN OVERVIEW OF RISK QUANTIFICATION ISSUES FOR DIGITALIZED NUCLEAR POWER PLANTS USING A STATIC FAULT TREE

Author(s)
Kang, Hyun GookKim, Man CheolLee, Seung JunLee, Ho JungEom, Heung SeopChoi, Jong GyunJang, Seung-Cheol
Issued Date
2009-08
URI
https://scholarworks.unist.ac.kr/handle/201301/19946
Fulltext
http://www.dbpia.co.kr/openurl/?vol=41&page=849&issn=1738-5733&issue=6&year=2009
Citation
NUCLEAR ENGINEERING AND TECHNOLOGY, v.41, no.6, pp.849 - 858
Abstract
Risk caused by safety-critical instrumentation and control (I&C) systems considerably affects overall plant risk. As digitalization of safety-critical systems in nuclear power plants progresses, a risk model of a digitalized safety system is required and must be included in a plant safety model in order to assess this risk effect on the plant. Unique features of a digital system cause some challenges in risk modeling. This article aims at providing an overview of the issues related to the development of a static fault-tree-based risk model. We categorize the complicated issues of digital system probabilistic risk assessment (PRA) into four groups based on their characteristics: hardware module issues, software issues, system issues, and safety function issues. Quantification of the effect of these issues dominates the quality of a developed risk model. Recent research activities for addressing various issues, such as the modeling framework of a software-based system, the software failure probability and the fault coverage of a self monitoring mechanism, are discussed. Although these issues are interrelated and affect each other, the categorized and systematic approach suggested here will provide a proper insight for analyzing risk from a digital system
Publisher
KOREAN NUCLEAR SOC
ISSN
1738-5733

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