INFRASTRESS2022-10-31T13:46:50+02:00
Improving resilience of sensitive industrial plants & infrastructures exposed to cyber-physical threats

InfraStress project website

InfraStress addresses cyber-physical (C/P) security of Sensitive Industrial Plants and Sites (SIPS) Critical Infrastructures (CI) and improves resilience and protection capabilities of SIPS exposed to large scale, combined, C/P threats and hazards, and guarantee continuity of operations, while minimizing cascading effects in the infrastructure itself, the environment, other CIs, and citizens in vicinity, at reasonable cost. In fact, InfraStress will develop TRL4+ solutions from preceding research and innovation towards TRL7 level producing maximum adoption of the proposed methods and solutions. Addressing the current fragmentation of the available security solutions and technology, InfraStress will provide an integrated framework including cyber and physical threat detection, integrated C/P Situational Awareness, Threat Intelligence, and an innovative methodology for resilience assessment – all tailored to each site.
InfraStress adopts a user-driven approach carried out through: a) delivery of usable and user-friendly Services and Applications for C/P protection and resilience; b) technical activities driven by and receiving active input from end users, i.e. SIPS and relevant stakeholders; c) a comprehensive set of 5 real-world Pilots and Evaluation activities to be carried out by User Partners.
InfraStress matches key impacts not only in response to the Work Programme Call but also at Strategic, Socio-economic and Market levels. In fact InfraStress was concerned since the beginning with a strong business vision in mind and will carry out effective exploitation actions ensureing successful go-to-market. Tailored activities are also planned to rise a culture of participatory security to involve all stakeholders including companies, workers, public authorities, citizens and civil society.
InfraStress involves 27 partners of excellence from 11 countries with very cross-cutting and complementary competences and excellent track records, including 5 SIPS operators.

Project Funding

EU Commission
Horizon 2020
H2020-SU-INFRA-2018

 Collaborators

Engineering – Ingegneria Informatica SPA
MOTOR OIL (HELLAS) Diilistiria Korinthou AE
Attilio Carmagnani “AC” S.p.a
FISIPE – Fibras Sinteticas de Portugal SA
Petrol Slovenska Energetska Druzba dd Ljubljana
Depuy (Ireland) Unlimited
Luka Koper, Port and Logistic System, D.D.
Municipio do Barreiro
European Virtual Institute for Intergrated Risk Management EU VRI EWIV
Consorzio Interuniversitario Nazionale per L’Informatica
Rina Consulting SPA
Steinbeis Advanced Risk Technologies GmbH
INOV INESC INOVACAO – Instituto de Novas Tecnologias
Ethniko Kentro Erevnas kai Technologikis Anaptyxis
DR Frucht Systems LTD
United Technologies Research Centre Ireland, Limited
SATWAYS – Proionta kai Ypiresies Tilematikis Diktyakon kai tilepikinoniakon Efarmogon Etairia Periorismenis Efthinis EPE
National Observatory of Athens
Holo Industrie 4.0 Software GmbH
G & N Silence LTD
Institut Jozef Stefan
Stam SRL
Uniwersytet Technologiczno Przyrodniczy im Jana i Jedrzeja Sniadeckich w Bydgoszczy
Institut za Korporativne Varnostne Studije Ljubljana
ATRISC
DIN Deutsches Institut Fuer Normung E.V.
Katholieke Universiteit Leuven

 Time Period

Jun 2019 – Sept 2021

Relevant Publications

Melissianos V.E. (2022). Onshore Buried Steel Fuel Pipelines at Fault Crossings: A Review of Critical Analysis and Design Aspects. Journal of Pipeline Systems Engineering and Practice, 13(4): 03122002. DOI: 10.1061/(ASCE)PS.1949-1204.0000661
Kazantzi A.K., Karaferis N.D., Melissianos V.E., Bakalis K., Vamvatsikos D. (2022). Seismic fragility assessment of two low-rise equipment-supporting RC industrial buildings. Proceedings of the 3rd European Conference on Earthquake Engineering and Seismology (3ECEES), Bucharest, Romania.
Kazantzi A.K., Karaferis N.D., Melissianos V.E., Bakalis K., Vamvatsikos D. (2022). Seismic fragility assessment of building-type structures in oil refineries. Bulletin of Earthquake Engineering, 20: 6853–6876. DOI: 10.1007/s10518-022-01476-y
Karaferis N.D., Kazantzi A.K., Melissianos V.E., Bakalis K., Vamvatsikos D. (2022). Seismic fragility assessment of high-rise stacks in oil refineries. Bulletin of Earthquake Engineering, 20:6877–6900. DOI: 10.1007/s10518-022-01472-2
Melissianos V.E., Karaferis N.D., Kazantzi A.K., Bakalis K., Vamvatsikos D. (2022). An integrated model for the seismic risk assessment of an oil refinery. Proceedings of the 3rd International Conference on Natural Hazards & Infrastructure ICONHIC 2022, Athens, Greece.
Vamvatsikos D., Chatzidaki A. (2022). The HAPI sensor-aware framework for infrastructure risk and resilience assessment. Proceedings of the 3rd International Conference on Natural Hazards & Infrastructure ICONHIC 2022, Athens, Greece.
Vamvatsikos D., Melissianos V., Kostaridis A., Kazantzi A.K, Karaferis N., Chatzidaki A., Diagourtas D., Bakalis K. (2021). The PANOPTIS-INFRASTRESS framework for infrastructure risk assessment. Proceedings of the 8th International Conference on Civil Protection & New Technologies (SafeGreece 2021), Athens, Greece.
Melissianos V., Vamvatsikos D., Gantes C.J. (2020). Methodology for failure mode prediction of onshore buried steel pipelines subjected to reverse fault rupture. Soil Dynamics and Earthquake Engineering, 135: 106116. DOI: 10.1016/j.soildyn.2020.106116

InfraStress Members

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