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Stochastic Counterfactual Risk Analysis for the Vulnerability Assessment of Cyber‐Physical Attacks on Electricity Distribution Infrastructure Networks

In December 2015, a cyber‐physical attack took place on the Ukrainian electricity distribution network. This is regarded as one of the first cyber‐physical attacks on electricity infrastructure to have led to a substantial power outage and is illustrative of the increasing vulnerability of Critical...

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Autores principales: Oughton, Edward J., Ralph, Daniel, Pant, Raghav, Leverett, Eireann, Copic, Jennifer, Thacker, Scott, Dada, Rabia, Ruffle, Simon, Tuveson, Michelle, Hall, Jim W
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6850035/
https://www.ncbi.nlm.nih.gov/pubmed/30812052
http://dx.doi.org/10.1111/risa.13291
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author Oughton, Edward J.
Ralph, Daniel
Pant, Raghav
Leverett, Eireann
Copic, Jennifer
Thacker, Scott
Dada, Rabia
Ruffle, Simon
Tuveson, Michelle
Hall, Jim W
author_facet Oughton, Edward J.
Ralph, Daniel
Pant, Raghav
Leverett, Eireann
Copic, Jennifer
Thacker, Scott
Dada, Rabia
Ruffle, Simon
Tuveson, Michelle
Hall, Jim W
author_sort Oughton, Edward J.
collection PubMed
description In December 2015, a cyber‐physical attack took place on the Ukrainian electricity distribution network. This is regarded as one of the first cyber‐physical attacks on electricity infrastructure to have led to a substantial power outage and is illustrative of the increasing vulnerability of Critical National Infrastructure to this type of malicious activity. Few data points, coupled with the rapid emergence of cyber phenomena, has held back the development of resilience analytics of cyber‐physical attacks, relative to many other threats. We propose to overcome data limitations by applying stochastic counterfactual risk analysis as part of a new vulnerability assessment framework. The method is developed in the context of the direct and indirect socioeconomic impacts of a Ukrainian‐style cyber‐physical attack taking place on the electricity distribution network serving London and its surrounding regions. A key finding is that if decision‐makers wish to mitigate major population disruptions, then they must invest resources more‐or‐less equally across all substations, to prevent the scaling of a cyber‐physical attack. However, there are some substations associated with higher economic value due to their support of other Critical National Infrastructures assets, which justifies the allocation of additional cyber security investment to reduce the chance of cascading failure. Further cyber‐physical vulnerability research must address the tradeoffs inherent in a system made up of multiple institutions with different strategic risk mitigation objectives and metrics of value, such as governments, infrastructure operators, and commercial consumers of infrastructure services.
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spelling pubmed-68500352019-11-15 Stochastic Counterfactual Risk Analysis for the Vulnerability Assessment of Cyber‐Physical Attacks on Electricity Distribution Infrastructure Networks Oughton, Edward J. Ralph, Daniel Pant, Raghav Leverett, Eireann Copic, Jennifer Thacker, Scott Dada, Rabia Ruffle, Simon Tuveson, Michelle Hall, Jim W Risk Anal Original Research Articles In December 2015, a cyber‐physical attack took place on the Ukrainian electricity distribution network. This is regarded as one of the first cyber‐physical attacks on electricity infrastructure to have led to a substantial power outage and is illustrative of the increasing vulnerability of Critical National Infrastructure to this type of malicious activity. Few data points, coupled with the rapid emergence of cyber phenomena, has held back the development of resilience analytics of cyber‐physical attacks, relative to many other threats. We propose to overcome data limitations by applying stochastic counterfactual risk analysis as part of a new vulnerability assessment framework. The method is developed in the context of the direct and indirect socioeconomic impacts of a Ukrainian‐style cyber‐physical attack taking place on the electricity distribution network serving London and its surrounding regions. A key finding is that if decision‐makers wish to mitigate major population disruptions, then they must invest resources more‐or‐less equally across all substations, to prevent the scaling of a cyber‐physical attack. However, there are some substations associated with higher economic value due to their support of other Critical National Infrastructures assets, which justifies the allocation of additional cyber security investment to reduce the chance of cascading failure. Further cyber‐physical vulnerability research must address the tradeoffs inherent in a system made up of multiple institutions with different strategic risk mitigation objectives and metrics of value, such as governments, infrastructure operators, and commercial consumers of infrastructure services. John Wiley and Sons Inc. 2019-02-27 2019-09 /pmc/articles/PMC6850035/ /pubmed/30812052 http://dx.doi.org/10.1111/risa.13291 Text en © 2019 The Authors Risk Analysis published by Wiley Periodicals, Inc. on behalf of Society for Risk Analysis. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research Articles
Oughton, Edward J.
Ralph, Daniel
Pant, Raghav
Leverett, Eireann
Copic, Jennifer
Thacker, Scott
Dada, Rabia
Ruffle, Simon
Tuveson, Michelle
Hall, Jim W
Stochastic Counterfactual Risk Analysis for the Vulnerability Assessment of Cyber‐Physical Attacks on Electricity Distribution Infrastructure Networks
title Stochastic Counterfactual Risk Analysis for the Vulnerability Assessment of Cyber‐Physical Attacks on Electricity Distribution Infrastructure Networks
title_full Stochastic Counterfactual Risk Analysis for the Vulnerability Assessment of Cyber‐Physical Attacks on Electricity Distribution Infrastructure Networks
title_fullStr Stochastic Counterfactual Risk Analysis for the Vulnerability Assessment of Cyber‐Physical Attacks on Electricity Distribution Infrastructure Networks
title_full_unstemmed Stochastic Counterfactual Risk Analysis for the Vulnerability Assessment of Cyber‐Physical Attacks on Electricity Distribution Infrastructure Networks
title_short Stochastic Counterfactual Risk Analysis for the Vulnerability Assessment of Cyber‐Physical Attacks on Electricity Distribution Infrastructure Networks
title_sort stochastic counterfactual risk analysis for the vulnerability assessment of cyber‐physical attacks on electricity distribution infrastructure networks
topic Original Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6850035/
https://www.ncbi.nlm.nih.gov/pubmed/30812052
http://dx.doi.org/10.1111/risa.13291
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