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Module level reliability performance evaluation of digital reactor protection system considering the repair and common cause failure

机译:考虑维修和共因故障的数字反应堆保护系统的模块级可靠性性能评估

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The Reactor Protection System (RPS) is designed and installed in the nuclear power plants (NPPs) to ensure both safety and economy. Nowadays the RPS adopts the digital techniques which consist of different digital modules. Therefore, this paper focuses on evaluating the reliability performance of the digital RPS using the Colored Petri Net (CPN) considering the module repair time whenever it fails and the Common Cause Failure (CCF). The module repair is considered as it takes some time to repair or replace the failed module and during the repair duration the digital RPS is operated in the degraded configuration and the common cause failure would severely impact the system in the event of occurrence. By studying the failure phenomenon and mechanism, the random probability shock model is adopted for CCF. Using the proposed model, the Monte Carlo simulation is carried out. Consequently, the indicators such as Mean Time To Repair (MTFR), Mean Time Between Failures (MTBF), Probability of Failure on Demand (PFD) and Probability of Spurious Trip (PST) are calculated. Following main conclusions are drawn i.e., i) the CCF is the main contribution to the PFD and PST. So the countermeasure for the CCF must be designed for the digital RPS; ii) the CCF has no effect on the MUFF, MTBF, MTIR and subsystem unavailability; iii) the failure detection time has adverse effect on the system. Therefore, the digital system should shorten the detection time or decrease the coverage for the failures that take long time to be detected. (C) 2017 Elsevier Ltd. All rights reserved.
机译:反应堆保护系统(RPS)设计并安装在核电厂(NPP)中,以确保安全和经济。如今,RPS采用由不同数字模块组成的数字技术。因此,本文着重在使用彩色Petri网(CPN)评估数字RPS的可靠性性能时,考虑了每当发生故障时的模块维修时间和常见原因故障(CCF)。之所以认为是模块维修,是因为需要花费一些时间来维修或更换发生故障的模块,并且在维修期间,数字RPS会以降级配置进行操作,并且在出现故障时,常见原因故障会严重影响系统。通过研究失效现象和机理,对CCF采用了随机概率冲击模型。使用提出的模型,进行了蒙特卡洛模拟。因此,计算出诸如平均修复时间(MTFR),平均故障间隔时间(MTBF),按需故障概率(PFD)和虚假跳脱概率(PST)等指标。得出以下主要结论,即:i)CCF是PFD和PST的主要贡献。因此,必须针对数字RPS设计CCF的对策。 ii)CCF对MUFF,MTBF,MTIR和子系统不可用没有影响; iii)故障检测时间对系统有不利影响。因此,数字系统应缩短检测时间或减少需要较长时间才能检测到的故障的覆盖范围。 (C)2017 Elsevier Ltd.保留所有权利。

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