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Reliability assessment method for NPP digital I&C systems considering the effect of automatic periodic tests

机译:考虑自动定期测试影响的NPP数字I&C系统可靠性评估方法

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Since digital technologies have been improved, the analog systems in nuclear power plants (NPPs) have been replaced with digital systems. Recently, new NPPs have adapted various kinds of digital instrumentation and control (I&C) systems. Even though digital I&C systems have various fault-tolerant techniques for enhancing the system availability and safety compared to conventional analog I&C systems, the effects of these fault-tolerant techniques on system safety have not been properly considered yet in most probabilistic safety assessment models. Therefore, it is necessary to develop the safety evaluation method for digital I&C systems with consideration of fault-tolerant techniques. Among the various issues in the safety model for digital I&C systems, one of the important issues is how to exclude the duplicated effect of fault-tolerant techniques implemented at each hierarchy level of the system. The exact relation between faults and fault-tolerant techniques should be identified in order to exclude this duplicated effect. In this work, the relation between faults and fault-tolerant techniques are identified using fault injection experiments. As an application, the proposed method was applied to a module of a digital reactor protection system.
机译:由于数字技术已得到改进,核电厂(NPP)中的模拟系统已被数字系统取代。最近,新的NPP已采用各种数字仪表和控制(I&C)系统。尽管与常规的模拟I&C系统相比,数字I&C系统具有各种容错技术来增强系统可用性和安全性,但是在大多数概率安全评估模型中尚未适当考虑这些容错技术对系统安全性的影响。因此,有必要在考虑容错技术的基础上开发数字化I&C系统的安全性评估方法。在数字I&C系统安全模型的各种问题中,重要的问题之一是如何排除在系统的每个层次级别实施的容错技术的重复影响。为了排除这种重复效应,应该确定故障和容错技术之间的确切关系。在这项工作中,使用故障注入实验来确定故障和容错技术之间的关系。作为一种应用,所提出的方法被应用于数字反应堆保护系统的模块。

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