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Complex approach to assessing resilience of critical infrastructure elements

机译:评估关键基础架构元素的弹性的复杂方法

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The resilience of elements in a critical infrastructure system is a major factor determining the reliability of services and commodities provided by the critical infrastructure system to society. Resilience can be viewed as a quality which reduces the vulnerability of an element, absorbs the effects of disruptive events, enhances the element's ability to respond and recover, and facilitates its adaptation to disruptive events similar to those encountered in the past. In this respect, resilience assessment plays an important role in ensuring the security and reliability of not only these elements alone, but also of the system as a whole. The paper introduces the CIERA methodology designed for Critical Infrastructure Elements Resilience Assessment. The principle of this method is the statistical assessment of the level of resilience of critical infrastructure elements, involving a complex evaluation of their robustness, their ability to recover functionality after the occurrence of a disruptive event and their capacity to adapt to previous disruptive events. The complex approach thus includes both the assessment of technical and organizational resilience, as well as the identification of weak points in order to strengthen resilience. An example of the application of the CIERA method is presented in the form of a case study focused on assessing the resilience of a selected element of electrical energy infrastructure. (C) 2019 The Authors. Published by Elsevier B.V.
机译:关键基础架构系统中元素的弹性是决定关键基础架构系统向社会提供服务和商品的可靠性的主要因素。复原力可以被视为一种品质,可以降低元素的脆弱性,吸收破坏性事件的影响,增强元素的响应和恢复能力,并有助于其适应类似于过去遇到的破坏性事件。在这方面,弹性评估在确保不仅这些要素本身而且整个系统的安全性和可靠性方面都起着重要作用。本文介绍了专为关键基础架构元素弹性评估而设计的CIERA方法。此方法的原理是对关键基础架构元素的复原力水平进行统计评估,包括对其健壮性,发生破坏性事件后恢复功能的能力以及对先前破坏性事件的适应能力的复杂评估。因此,复杂的方法既包括对技术和组织弹性的评估,也包括对薄弱环节的识别,以增强弹性。以案例研究的形式介绍了CIERA方法的应用示例,该案例研究的重点是评估选定的电能基础设施要素的弹性。 (C)2019作者。由Elsevier B.V.发布

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