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PETS2025: Multi-Authority Multi-Sensor Maritime Surveillance Challenge and Evaluation

  • Thanet Markchom (Author and Speaker)
  • , Jonathan Boyle
  • , Lulu Chen
  • , James Ferryman (Author and Speaker)
  • , Matteo Marturini
  • , Stephan Veigl
  • , Andreas Opitz
  • , Andreas Kriechbaum-Zabini
  • , Romaios Bratskas
  • , Anastasios Gkamaris
  • , Dimitris Papachristos
  • , George Leventakis
  • , Wenjun Fan
  • , Hsiang-Wei Huang
  • , Jeng-Neng Hwang
  • , Pyongkun Kim
  • , Kwangju Kim
  • , Chung-I Huang
  • , Kenta Saito
  • , Shunta Kaneko
  • Kyoko Sudo, Nguyen Thanh Thien, Meng-Yu Kao, Jun-Wei Hsieh, Teepakorn Lilek, Tossapol Pomsuwan, Jinjie Gu, Tianyang Xu, Xuefeng Zhu, Xiaojun Wu, Josef Kittler, Stephanie Stacy, Alfredo Gabaldon, Peter Tu, Sangwon Kim, Dongyoung Kim, Kyoungoh Lee
  • University of Reading
  • SKYLD Security and Defence Ltd
  • University of the Aegean
  • University of Washington
  • Electronics and Telecommunications Research Institute
  • National Center of High-Performance Computing (NCHC)
  • Toho University
  • University of Information Technology (UIT)
  • National Yang Ming Chiao Tung University
  • National Electronics and Computer Technology Center
  • Digital Government Development Agency
  • Jiangnan University
  • University of Surrey
  • GE Aerospace Research

Research output: Chapter in Book or Conference ProceedingsConference Proceedings with Oral Presentationpeer-review

Abstract

This paper presents the outcomes of the PETS2025 challenge, held in conjunction with AVSS 2025 and sponsored by the EU-funded EURMARS project. The challenge introduces a novel maritime surveillance dataset comprising image sequences captured by diverse multi-altitude, multimodal sensors, reflecting the real-world multi-authority environment. The key tasks include: (1) object detection using various sensors across different platforms (ground-based and low-altitude aerial) and spectral ranges (visible, thermal, ultraviolet (UV), and short-wave infrared (SWIR)); (2) long-term tracking of targets in maritime environments spanning both sea and land; and (3) approximating target geolocations by using sensor imagery and telemetry data. Performance evaluations of results submitted by 12 international participants are discussed. The results show the effectiveness of these submissions and highlight ongoing challenges posed by heterogeneous sensors and complex environments. These challenges emphasise the need to further improve detection, tracking, and geolocation approximation for maritime and coastal surveillance.
Original languageEnglish
Title of host publication2025 IEEE International Conference on Advanced Visual and Signal-Based Systems (AVSS)
Editors IEEE
Pages1-14
Number of pages14
ISBN (Electronic)979-8-3315-1480-8
DOIs
Publication statusPublished - 2025
Event2025 IEEE International Conference on Advanced Visual and Signal-Based Systems (AVSS) - Tainan, Tainan, Taiwan, Province of China
Duration: 11 Aug 202513 Aug 2025

Conference

Conference2025 IEEE International Conference on Advanced Visual and Signal-Based Systems (AVSS)
Country/TerritoryTaiwan, Province of China
CityTainan
Period11/08/2513/08/25

Research Field

  • Computer Vision

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