Projets par an
Résumé
Ship deck landing of Unmanned Aerial Vehicles (UAVs/drones) in different kinds of environmental conditions remains a bottleneck for the widespread deployment of UAVs for maritime operations. For safe operation, the relative motion between the UAV and the pitching and rolling deck of a moving ship must be estimated accurately and in real-time. This paper presents a visual Simultaneous Localization and Mapping (SLAM) method for real-time motion estimation of the UAV with respect to its confined landing area on a maritime platform during landing phase. The visual SLAM algorithm ORBSLAM3 [1] was selected after benchmarking with multiple state-of-the-art visual SLAM and Visual Odometry (VO) algorithms with the EuRoC dataset [2]. It was evaluated for a simulated landing scenario of a UAV at 16m height with a downward camera in multiple configurations with sufficient results in both speed and accuracy for the landing task.
langue originale | Anglais |
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titre | Proceedings - International Symposium on Measurement and Control in Robotics |
Sous-titre | Robotics and Virtual Tools for a New Era, ISMCR 2022 |
rédacteurs en chef | Zafar Taqvi, Simone Keller Fuchter, Geraldo Gurgel Filho |
Editeur | Institute of Electrical and Electronics Engineers Inc. |
ISBN (Electronique) | 9781665454964 |
Les DOIs | |
état | Publié - 2022 |
Evénement | 25th International Symposium on Measurement and Control in Robotics, ISMCR 2022 - Virtual, Online, États-Unis Durée: 28 sept. 2022 → 30 sept. 2022 |
Série de publications
Nom | Proceedings - International Symposium on Measurement and Control in Robotics: Robotics and Virtual Tools for a New Era, ISMCR 2022 |
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Une conférence
Une conférence | 25th International Symposium on Measurement and Control in Robotics, ISMCR 2022 |
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Pays/Territoire | États-Unis |
La ville | Virtual, Online |
période | 28/09/22 → 30/09/22 |
Empreinte digitale
Examiner les sujets de recherche de « Visual SLAM for Autonomous Drone Landing on a Maritime Platform ». Ensemble, ils forment une empreinte digitale unique.Projets
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MarLand: Automated take-off and landing of unmanned vehicles from Belgian Navy vessels
De cubber, G. (Promoteur), Janssens, B. (Promoteur) & Nguyên, T. (Chercheur)
1/09/20 → 31/08/25
Projet: Recherche