4.5 Article

Resilience Assessment in Electricity Critical Infrastructure from the Point of View of Converged Security

Journal

ENERGIES
Volume 14, Issue 6, Pages -

Publisher

MDPI
DOI: 10.3390/en14061624

Keywords

critical infrastructure; electricity; resilience assessment; converged security; penalty factors

Categories

Funding

  1. Ministry of the Interior of the Czech Republic [VI20192022151]

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The electricity sector is crucial as the supply it provides is vital for society and its basic functions. Therefore, monitoring the resilience level of infrastructure elements, especially against threats with multispectral impact, is necessary. The Converged Resilience Assessment (CRA) method, developed in the article, enables advanced assessment of electricity critical infrastructure elements' resilience from a converged security perspective, focusing on information and situation management.
In terms of service provision, the electricity sector is the most important critical infrastructure sector, on the supply of which the vast majority of society and its basic vital functions depend. Extensive disruption of these supplies would have negative effects not only on basic human needs, but also on the economy and security of the state. For this reason, it is necessary to ensure permanent and comprehensive monitoring of the infrastructure elements resilience level, especially against threats with a multispectral impact on several areas of security. For this reason, the authors of the article developed the Converged Resilience Assessment (CRA) method, which enables advanced assessment of the electricity critical infrastructure elements resilience from the converged security point of view. Converged security in this case combines (converges) physical, cyber and operational security into a complementary unit. This reflects the integral determinants of resilience across related areas of security/safety. The CRA method focuses mainly on information and situation management, which integrates and correlates information (signals) from systems and sensors in order to obtain an overview of the situation and the subsequent effective management of its solution. The practical use of the proposed method is demonstrated on a selected element of the Czech Republic transmission system. The CRA method is currently embodied in a functional sample that has been piloted on several TSO elements. Further development of this method is seen mainly in fulfilling the logic of network infrastructure and reflection between elementary and intersectoral links in the context of synergistic and cascading effects in a broader context.

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