PHOENI2X -- A European Cyber Resilience Framework With Artificial-Intelligence-Assisted Orchestration, Automation and Response Capabilities for Business Continuity and Recovery, Incident Response, and Information Exchange
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| Format: | Preprint |
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2023
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| author | Fysarakis, Konstantinos Lekidis, Alexios Mavroeidis, Vasileios Lampropoulos, Konstantinos Lyberopoulos, George Vidal, Ignasi Garcia-Milà Casals, José Carles Terés i Luna, Eva Rodriguez Sancho, Alejandro Antonio Moreno Mavrelos, Antonios Tsantekidis, Marinos Pape, Sebastian Chatzopoulou, Argyro Nanou, Christina Drivas, George Photiou, Vangelis Spanoudakis, George Koufopavlou, Odysseas |
| author_facet | Fysarakis, Konstantinos Lekidis, Alexios Mavroeidis, Vasileios Lampropoulos, Konstantinos Lyberopoulos, George Vidal, Ignasi Garcia-Milà Casals, José Carles Terés i Luna, Eva Rodriguez Sancho, Alejandro Antonio Moreno Mavrelos, Antonios Tsantekidis, Marinos Pape, Sebastian Chatzopoulou, Argyro Nanou, Christina Drivas, George Photiou, Vangelis Spanoudakis, George Koufopavlou, Odysseas |
| contents | As digital technologies become more pervasive in society and the economy, cybersecurity incidents become more frequent and impactful. According to the NIS and NIS2 Directives, EU Member States and their Operators of Essential Services must establish a minimum baseline set of cybersecurity capabilities and engage in cross-border coordination and cooperation. However, this is only a small step towards European cyber resilience. In this landscape, preparedness, shared situational awareness, and coordinated incident response are essential for effective cyber crisis management and resilience. Motivated by the above, this paper presents PHOENI2X, an EU-funded project aiming to design, develop, and deliver a Cyber Resilience Framework providing Artificial-Intelligence-assisted orchestration, automation and response capabilities for business continuity and recovery, incident response, and information exchange, tailored to the needs of Operators of Essential Services and the EU Member State authorities entrusted with cybersecurity. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2307_06932 |
| institution | arXiv |
| publishDate | 2023 |
| record_format | arxiv |
| spellingShingle | PHOENI2X -- A European Cyber Resilience Framework With Artificial-Intelligence-Assisted Orchestration, Automation and Response Capabilities for Business Continuity and Recovery, Incident Response, and Information Exchange Fysarakis, Konstantinos Lekidis, Alexios Mavroeidis, Vasileios Lampropoulos, Konstantinos Lyberopoulos, George Vidal, Ignasi Garcia-Milà Casals, José Carles Terés i Luna, Eva Rodriguez Sancho, Alejandro Antonio Moreno Mavrelos, Antonios Tsantekidis, Marinos Pape, Sebastian Chatzopoulou, Argyro Nanou, Christina Drivas, George Photiou, Vangelis Spanoudakis, George Koufopavlou, Odysseas Cryptography and Security As digital technologies become more pervasive in society and the economy, cybersecurity incidents become more frequent and impactful. According to the NIS and NIS2 Directives, EU Member States and their Operators of Essential Services must establish a minimum baseline set of cybersecurity capabilities and engage in cross-border coordination and cooperation. However, this is only a small step towards European cyber resilience. In this landscape, preparedness, shared situational awareness, and coordinated incident response are essential for effective cyber crisis management and resilience. Motivated by the above, this paper presents PHOENI2X, an EU-funded project aiming to design, develop, and deliver a Cyber Resilience Framework providing Artificial-Intelligence-assisted orchestration, automation and response capabilities for business continuity and recovery, incident response, and information exchange, tailored to the needs of Operators of Essential Services and the EU Member State authorities entrusted with cybersecurity. |
| title | PHOENI2X -- A European Cyber Resilience Framework With Artificial-Intelligence-Assisted Orchestration, Automation and Response Capabilities for Business Continuity and Recovery, Incident Response, and Information Exchange |
| topic | Cryptography and Security |
| url | https://arxiv.org/abs/2307.06932 |