Adamantini Peratikou

dblp:34/8823 · DBLP profile ↗
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5ranked-venue papers
1as first author
4since 2021 · last 2025
0000-0003-1273-8910ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 4 · 1 first-author · 4 since 2021Systems, architecture and hardware · 1
YearPublicationVenuePosition
2025 Reducing SOC Analysts Alert Fatigue via Real-Time CTI Correlation and Deduplication
Sotiris Koumourou, Adamantini Peratikou, Eliana Stavrou, Savvas Theodoulou, Stavros Stavrou
CRITIS2
2025 CY-TRUST: A Sectorial SOC Framework for Enhanced National and Cross-Border Cybersecurity Resilience
Adamantini Peratikou, Evagoras Charalambous, Eliana Stavrou, Panayiota Smyrli, George Hadjichristophi, Stavros Stavrou
CRITIS1
2025 A Multi-dimensional Cyber Range-Powered Scoring Framework for Evaluating Cyber Resilience of Critical Infrastructures
Savvas Theodoulou, Eliana Stavrou, Adamantini Peratikou, Stavros Stavrou
CRITIS3
2023 A novel Evil Twin MiTM attack through 802.11v protocol exploitation
Constantinos Louca, Adamantini Peratikou, Stavros Stavrou
Comput. Secur.2
2017 Routing and Fault Tolerance in Z-Fat Tree
abstract
Fat tree topologies have been extensively used as interconnection networks for high performance computing, cluster and data center systems, with their most recent variants able to fairly extend and scale to accommodate higher processing power. While each progressive and evolved fat-tree topology includes some extra advancements, these networks do not fully address all the issues of large scale HPC. We propose a topology called Zoned-Fat tree (Z-Fat tree,) which is a further extension to the fat trees. The extension relates to the provision of extra degree of connectivity to utilize the extra ports per switches (routing nodes), that are, in some cases, not utilized by the architectural constraints of other variants of fat trees, and hence increases the bisection bandwidth, reduces the latency and supplies additional paths for fault tolerance. To support and profit from the extra links, we propose an adaptive low latency routing for up traffic which is based on a series of leading direction bits predefined at the source; furthermore we suggest a deterministic routing by implementing a dynamic round robin algorithm that overtakes D-mod-K in same cases and guarantees the utilization of all the extra links. We also propose a fault tolerance algorithm, named recoil-and-reroute which makes use of the extra links to ensure higher message delivery even in the presence of faulty links and switches.
Mo Adda, Adamantini Peratikou
IEEE Trans. Parallel Distributed Syst.2