VLDB 2026 Research / reviewers in the wild / expert
Petros Gigis
dblp:159/4596
· DBLP profile ↗
9ranked-venue papers
2as first author
4since 2021 · last 2024
0000-0002-2076-6287ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Computer networks · 7 · 2 first-author · 4 since 2021Security and privacy · 2
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2024 | Bad Packets Come Back, Worse Ones Don'tabstractISPs may notice that traffic from certain sources is entering their network at an unexpected location, but it is hard to know if this represents a problem or is just normal spoofed background noise. If such traffic is not spoofed, it would be useful to generate alerts, but alerting on background noise is not useful. Petros Gigis, Mark Handley, Stefano Vissicchio |
SIGCOMM | 1 |
| 2021 | Towards a traffic map of the Internet Connecting the dots between popular services and users: Connecting the dots between popular services and usersabstractThe impact of Internet phenomena depends on how they impact users, but researchers lack visibility into how to translate Internet events into their impact. Distressingly, the research community seems to have lost hope of obtaining this information without relying on privileged viewpoints. We argue for optimism thanks to new network measurement methods and changes in Internet structure which make it possible to construct an "Internet traffic map". This map would identify the locations of users and major services, the paths between them, and the relative activity levels routed along these paths. We sketch our vision for the map, detail new measurement ideas for map construction, and identify key challenges that the research community should tackle. The realization of an Internet traffic map will be an Internet-scale research effort with Internet-scale impacts that reach far beyond the research community, and so we hope our fellow researchers are excited to join us in addressing this challenge. Weifan Jiang, Petros Gigis, Kevin Vermeulen, Emile Aben, Matt Calder, Ethan Katz-Bassett, Lefteris Manassakis, Georgios Smaragdakis, Narseo Vallina-Rodriguez |
HotNets | 4 |
| 2021 | Seven years in the life of Hypergiants' off-netsabstractContent Hypergiants deliver the vast majority of Internet traffic to end users. In recent years, some have invested heavily in deploying services and servers inside end-user networks. With several dozen Hypergiants and thousands of servers deployed inside networks, these off-net (meaning outside the Hypergiant networks) deployments change the structure of the Internet. Previous efforts to study them have relied on proprietary data or specialized per-Hypergiant measurement techniques that neither scale nor generalize, providing a limited view of content delivery on today's Internet. Petros Gigis, Matt Calder, Lefteris Manassakis, George Nomikos, Vasileios Kotronis, Xenofontas A. Dimitropoulos, Ethan Katz-Bassett, Georgios Smaragdakis |
SIGCOMM | 1 |
| 2021 | O Peer, Where Art Thou? Uncovering Remote Peering Interconnections at IXPsabstractInternet eXchange Points (IXPs) are Internet hubs that mainly provide the switching infrastructure to interconnect networks and exchange traffic. While the initial goal of IXPs was to bring together networks residing in the same city or country, and thus keep local traffic local, this model is gradually shifting. Many networks connect to IXPs without having physical presence at their switching infrastructure. This practice, called Remote Peering, is changing the Internet topology and economy, and has become the subject of a contentious debate within the network operators' community. However, despite the increasing attention it attracts, the understanding of the characteristics and impact of remote peering is limited. In this work, we introduce and validate a heuristic methodology for discovering remote peers at IXPs. We (i) identify critical remote peering inference challenges, (ii) infer remote peers with high accuracy (>97%) and coverage (94%) per IXP, and (iii) characterize different aspects of the remote peering ecosystem by applying our methodology to 30 large IXPs. We observe that remote peering is a significantly common practice in all the studied IXPs; for the largest IXPs, remote peers account for 40% of their member base. We also show that today, IXP growth is mainly driven by remote peering, which contributes two times more than local peering. Vasileios Giotsas, George Nomikos, Vasileios Kotronis, Pavlos Sermpezis, Petros Gigis, Lefteris Manassakis, Christoph Dietzel, Stavros Konstantaras, Xenofontas A. Dimitropoulos |
IEEE/ACM Trans. Netw. | 5 |
| 2020 | A First Look at the Misuse and Abuse of the IPv4 Transfer Market
Vasileios Giotsas, Ioana Livadariu, Petros Gigis |
PAM | 3 |
| 2018 | O Peer, Where Art Thou?: Uncovering Remote Peering Interconnections at IXPs
George Nomikos, Vasileios Kotronis, Pavlos Sermpezis, Petros Gigis, Lefteris Manassakis, Christoph Dietzel, Stavros Konstantaras, Xenofontas A. Dimitropoulos, Vasileios Giotsas |
Internet Measurement Conference | 4 |
| 2018 | ARTEMIS: Neutralizing BGP Hijacking Within a MinuteabstractBorder gateway protocol (BGP) prefix hijacking is a critical threat to Internet organizations and users. Despite the availability of several defense approaches (ranging from RPKI to popular third-party services), none of them solves the problem adequately in practice. In fact, they suffer from: (i) lack of detection comprehensiveness, allowing sophisticated attackers to evade detection; (ii) limited accuracy, especially in the case of third-party detection; (iii) delayed verification and mitigation of incidents, reaching up to days; and (iv) lack of privacy and of flexibility in post-hijack counteractions, on the side of network operators. In this paper, we propose ARTEMIS, a defense approach (a) based on accurate and fast detection operated by the autonomous system itself, leveraging the pervasiveness of publicly available BGP monitoring services and their recent shift towards real-time streaming and thus (b) enabling flexible and fast mitigation of hijacking events. Compared to the previous work, our approach combines characteristics desirable to network operators, such as comprehensiveness, accuracy, speed, privacy, and flexibility. Finally, we show through real-world experiments that with the ARTEMIS approach, prefix hijacking can be neutralized within a minute. Pavlos Sermpezis, Vasileios Kotronis, Petros Gigis, Xenofontas A. Dimitropoulos, Danilo Cicalese, Alistair King, Alberto Dainotti |
IEEE/ACM Trans. Netw. | 3 |
| 2016 | ARTEMIS: Real-Time Detection and Automatic Mitigation for BGP Prefix HijackingabstractPrefix hijacking is a common phenomenon in the Internet that often causes routing problems and economic losses. In this demo, we propose ARTEMIS, a tool that enables network administrators to detect and mitigate prefix hijacking incidents, against their own prefixes. ARTEMIS is based on the real-time monitoring of BGP data in the Internet, and software-defined networking (SDN) principles, and can completely mitigate a prefix hijacking within a few minutes (e.g., 5-6mins in our experiments) after it has been~launched. Gavriil Chaviaras, Petros Gigis, Pavlos Sermpezis, Xenofontas A. Dimitropoulos |
SIGCOMM | 2 |
| 2015 | Transparent Estimation of Internet Penetration from Network Observations
Suso Benitez-Baleato, Nils B. Weidmann, Petros Gigis, Xenofontas A. Dimitropoulos, Eduard Glatz, Brian Trammell |
PAM | 3 |