Abstract
This paper introduces an autonomous UAV vision system for continuous, real-time tracking of marine animals, specifically sharks, in dynamic marine environments. The system integrates an onboard computer with a stabilised RGB-D camera and a custom-trained OSTrack pipeline, enabling visual identification under challenging lighting, occlusion, and sea-state conditions. A key innovation is the inter-UAV handoff protocol, which enables seamless transfer of tracking responsibilities between drones, extending operational coverage beyond single-drone battery limitations. Performance is evaluated on a curated shark dataset of 5,200 frames, achieving a tracking success rate of 81.9% during real-time flight control at 100 Hz, and robustness to occlusion, illumination variation, and background clutter. We present a seamless UAV handoff framework, where target transfer is attempted via high-confidence feature matching, achieving 82.9% target coverage. These results confirm the viability of coordinated UAV operations for extended marine tracking and lay the groundwork for scalable, autonomous monitoring.
| Original language | English |
|---|---|
| Title of host publication | MobiSys '25 |
| Subtitle of host publication | proceedings of the 23st ACM international Conference on Mobile Systems, Applications, and Services |
| Place of Publication | New York |
| Publisher | Association for Computing Machinery |
| Pages | 711-716 |
| Number of pages | 6 |
| ISBN (Electronic) | 9798400714535 |
| DOIs | |
| Publication status | Published - 2025 |
| Event | ACM International Conference on Mobile Systems, Applications, and Services (23rd : 2025) - Anaheim, United States Duration: 23 Jun 2025 → 27 Jun 2025 Conference number: 23rd |
Conference
| Conference | ACM International Conference on Mobile Systems, Applications, and Services (23rd : 2025) |
|---|---|
| Abbreviated title | ACM MobiSys 2025 |
| Country/Territory | United States |
| City | Anaheim |
| Period | 23/06/25 → 27/06/25 |
Bibliographical note
Varied title in PDF: "Continuous marine tracking via autonomous UAV handoff"Copyright the Author(s) 2025. Version archived for private and non-commercial use with the permission of the author/s and according to publisher conditions. For further rights please contact the publisher.
Keywords
- Drone
- UAV
- Computer Vision
- Tracking
- computer vision
- tracking
- drone
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