基于状态转换图的核电厂反应堆保护系统可靠性评估动态建模

M. Shouman, Amany S. Saber, M. Shaat, A. El-Sayed, Hanaa Torkey
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引用次数: 1

摘要

采用传统的故障树分析方法对数字动态系统进行可靠性评估是困难的。本文研究了核电厂数字反应堆保护系统(RPS)等安全关键复杂系统的动态建模问题。数字RPS是核电站在紧急情况下用于安全运行和关闭反应堆的安全系统。本文利用状态转移图对2- of-4结构的数字RPS进行了定量评估可靠性分析。本研究通过计算按需故障概率(PFD)来评估独立硬件故障、共因故障(CCFs)和软件故障对RPS故障的影响。结果表明,所提方法对数字RPS的可靠性分析和评价是有效的,CCFs和较长的检测时间是影响数字RPS的PFD的主要因素。
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Dynamic Modeling of Reactor Protection System in Nuclear Power Plant for Reliability Evaluation Based on State Transition Diagram
Reliability assessment of a digital dynamic system using traditional Fault Tree Analysis (FTA) is difficult. This paper addresses the dynamic modeling of safety-critical complex systems such as the digital Reactor Protection System (RPS) in Nuclear Power Plants (NPPs). The digital RPS is a safety system utilized in the NPPs for safe operation and shut-down of the reactor in emergency events. A quantitative evaluation reliability analysis for the digital RPS with 2-out-of-4 architecture using the state transition diagram is presented in this paper. The study assesses the effects of independent hardware failures, Common Cause Failures (CCFs), and software failures on the failure of the RPS through calculating Probability of Failure on Demand (PFD). The results prove the validity of the proposed method in analyzing and evaluating reliability of the digital RPS and also show that the CCFs and longer detection time are the main contributions to the PFD of digital RPS.
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