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Operational security, threat intelligence & distributed computing: the WLCG Security Operations Center Working Group
The modern security landscape for distributed computing in High Energy Physics (HEP) includes a wide range of threats employing different attack vectors. The nature of these threats is such that the most effective method for dealing with them is to work collaboratively, both within the HEP community...
Autores principales: | , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2019
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1051/epjconf/201921403029 http://cds.cern.ch/record/2701591 |
_version_ | 1780964598200926208 |
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author | Crooks, David Vâlsan, Liviu Mohammad, Kashif McKee, Shawn Clark, Paul Boutcher, Adam Padée, Adam Wójcik, Michał Giemza, Henryk Kreukniet, Bas |
author_facet | Crooks, David Vâlsan, Liviu Mohammad, Kashif McKee, Shawn Clark, Paul Boutcher, Adam Padée, Adam Wójcik, Michał Giemza, Henryk Kreukniet, Bas |
author_sort | Crooks, David |
collection | CERN |
description | The modern security landscape for distributed computing in High Energy Physics (HEP) includes a wide range of threats employing different attack vectors. The nature of these threats is such that the most effective method for dealing with them is to work collaboratively, both within the HEP community and with partners further afield - these can, and should, include institutional and campus security teams. In parallel with this work, an appropriate technology stack is essential, incorporating current work on Big Data analytics. The work of the Worldwide LHC Computing Grid (WLCG) Security Operations Center (SOC) Working Group (WG) [1] is to pursue these goals to form a reference design (or guidelines) for WLCG sites of different types. The strategy of the group is to identify necessary components - starting with threat intelligence (MISP [2]) and network intrusion detection (Bro [3]), building a working model over time. We present on the progress of the working group thus far, in particular on the programme of workshops now underway. These workshops give an opportunity to engage with sites to allow the development of advice and procedures for deployment, as well as facilitating wider discussions on how to best work with trust groups at different levels. These trust groups vary in scope but can include institutes, National Grid Infrastructures and the WLCG as a whole. |
id | oai-inspirehep.net-1760928 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2019 |
record_format | invenio |
spelling | oai-inspirehep.net-17609282022-08-10T12:21:15Zdoi:10.1051/epjconf/201921403029http://cds.cern.ch/record/2701591engCrooks, DavidVâlsan, LiviuMohammad, KashifMcKee, ShawnClark, PaulBoutcher, AdamPadée, AdamWójcik, MichałGiemza, HenrykKreukniet, BasOperational security, threat intelligence & distributed computing: the WLCG Security Operations Center Working GroupComputing and ComputersThe modern security landscape for distributed computing in High Energy Physics (HEP) includes a wide range of threats employing different attack vectors. The nature of these threats is such that the most effective method for dealing with them is to work collaboratively, both within the HEP community and with partners further afield - these can, and should, include institutional and campus security teams. In parallel with this work, an appropriate technology stack is essential, incorporating current work on Big Data analytics. The work of the Worldwide LHC Computing Grid (WLCG) Security Operations Center (SOC) Working Group (WG) [1] is to pursue these goals to form a reference design (or guidelines) for WLCG sites of different types. The strategy of the group is to identify necessary components - starting with threat intelligence (MISP [2]) and network intrusion detection (Bro [3]), building a working model over time. We present on the progress of the working group thus far, in particular on the programme of workshops now underway. These workshops give an opportunity to engage with sites to allow the development of advice and procedures for deployment, as well as facilitating wider discussions on how to best work with trust groups at different levels. These trust groups vary in scope but can include institutes, National Grid Infrastructures and the WLCG as a whole.oai:inspirehep.net:17609282019 |
spellingShingle | Computing and Computers Crooks, David Vâlsan, Liviu Mohammad, Kashif McKee, Shawn Clark, Paul Boutcher, Adam Padée, Adam Wójcik, Michał Giemza, Henryk Kreukniet, Bas Operational security, threat intelligence & distributed computing: the WLCG Security Operations Center Working Group |
title | Operational security, threat intelligence & distributed computing: the WLCG Security Operations Center Working Group |
title_full | Operational security, threat intelligence & distributed computing: the WLCG Security Operations Center Working Group |
title_fullStr | Operational security, threat intelligence & distributed computing: the WLCG Security Operations Center Working Group |
title_full_unstemmed | Operational security, threat intelligence & distributed computing: the WLCG Security Operations Center Working Group |
title_short | Operational security, threat intelligence & distributed computing: the WLCG Security Operations Center Working Group |
title_sort | operational security, threat intelligence & distributed computing: the wlcg security operations center working group |
topic | Computing and Computers |
url | https://dx.doi.org/10.1051/epjconf/201921403029 http://cds.cern.ch/record/2701591 |
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