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Reliability and vulnerability analyses of critical infrastructures: Comparing two approaches in the context of power systems

机译:关键基础设施的可靠性和脆弱性分析:在电力系统中比较两种方法

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摘要

Society depends on services provided by critical infrastructures, and hence it is important that they are reliable and robust Two main approaches for gaining knowledge required for designing and improving critical infrastructures are reliability analysis and vulnerability analysis. The former analyses the ability of the system to perform its intended function; the latter analyses its inability to withstand strains and the effects of the consequent failures. The two approaches have similarities but also some differences with respect to what type of information they generate about the system. In this view, the main purpose of this paper is to discuss and contrast these approaches. To strengthen the discussion and exemplify its findings, a Monte Carlo-based reliability analysis and a vulnerability analysis are considered in their application to a relatively simple, but representative, system the IEEE RTS96 electric power test system. The exemplification reveals that reliability analysis provides a good picture of the system likely behaviour, but fails to capture a large portion of the high consequence scenarios, which are instead captured in the vulnerability analysis. Although these scenarios might be estimated to have small probabilities of occurrence, they should be identified, considered and treated cautiously, as probabilistic analyses should not be the only input to decision-making for the design and protection of critical infrastructures. The general conclusion that can be drawn from the findings of the example is that vulnerability analysis should be used to complement reliability studies, as well as other forms of probabilistic risk analysis. Measures should be sought for reducing both the vulnerability, i.e. improving the system ability to withstand strains and stresses, and the reliability, i.e. improving the likely behaviour.
机译:社会依赖于关键基础架构所提供的服务,因此,重要的是它们必须可靠且健壮。获得设计和改进关键基础架构所需知识的两种主要方法是可靠性分析和漏洞分析。前者分析系统执行其预期功能的能力。后者分析了它无法承受应力以及随之而来的故障的影响。两种方法在生成有关系统的信息类型方面有相似之处,但也有一些区别。以这种观点,本文的主要目的是讨论和对比这些方法。为了加强讨论并举例说明其发现,在基于蒙特卡洛的可靠性分析和漏洞分析中,将其应用于相对简单但具有代表性的IEEE RTS96电力测试系统。该示例表明,可靠性分析可以很好地了解系统的可能行为,但无法捕获很大一部分的高后果方案,而这些情况却是在漏洞分析中捕获的。尽管可能会估计这些情况的发生概率很小,但应谨慎识别,考虑和对待它们,因为概率分析不应成为决策和设计关键基础设施的唯一输入。可以从示例的发现中得出的一般结论是,应该使用脆弱性分析来补充可靠性研究以及其他形式的概率风险分析。应该寻求措施以减少脆弱性,即提高系统承受压力和应力的能力,以及可靠性,即改善可能的行为。

著录项

  • 来源
    《Reliability Engineering & System Safety》 |2013年第12期|27-38|共12页
  • 作者单位

    Department of Industrial Electrical Engineering and Automation, Lund University, Box 118, SE-221 00 Lund, Sweden,Lund University Centre for Risk Analysis and Management (LUCRAM), Sweden;

    Department of Fire Safety Engineering and Systems Safety, Lund University, Box 118, SE-221 00 Lund, Sweden,Lund University Centre for Risk Analysis and Management (LUCRAM), Sweden;

    Chair on Systems Science and the Energetic Challenge, European Foundation for New Energy-Electricite' de France, at Ecole Centrale Paris & Supelec, France,Dipartimento di Energia, Politecnico di Milano, Milano, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Reliability analysis; Vulnerability analysis; Risk management; Critical infrastructures; Power systems;

    机译:可靠性分析;漏洞分析;风险管理;关键基础设施;电力系统;

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