Multi-fragmental and multi-phase availability models of the safety-critical I&C systems with two-cascade redundancy

IF 0.5 Q4 TELECOMMUNICATIONS
Vyacheslav Kharchenko, Yuriy Ponochovnyi, Ievgen Babeshko
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引用次数: 0

Abstract

Traditional availability, reliability, and safety models face the dimension problem due to a huge number of components in modern systems, motivating further research in this field. This paper focuses on multi-fragmental and multiphase models for availability and functional safety assessment of the information and control (I&C) systems with two-cascade redundancy considering design faults manifestation during operation. The methodology of the research is based on Markov and semi-Markov chains with the utilization of multi-phase modeling. Several multi-phase models are developed and investigated considering different conditions of operation and failures caused by version faults. The case study of the research is based on the analysis of safety-critical nuclear power plant I&C systems such as the reactor trip systems developed using the programmable platform RadICS.
具有双级联冗余的安全关键型 I&C 系统的多碎片和多阶段可用性模型
由于现代系统中组件数量庞大,传统的可用性、可靠性和安全性模型面临着维度问题,这促使我们在这一领域开展更深入的研究。本文重点研究多片段和多阶段模型,用于对具有双级联冗余的信息和控制(I&C)系统进行可用性和功能安全评估,并考虑到运行过程中出现的设计故障。研究方法基于马尔可夫链和半马尔可夫链,并利用多阶段建模。考虑到不同的运行条件和版本故障导致的故障,开发并研究了多个多阶段模型。研究的案例分析基于对安全关键核电厂 I&C 系统的分析,如使用可编程平台 RadICS 开发的反应堆跳闸系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.50
自引率
14.30%
发文量
0
审稿时长
12 weeks
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