A New Coastal Crawler Prototype to Expand the Ecological Monitoring Radius of OBSEA Cabled Observatory

被引:5
|
作者
Falahzadeh, Ahmad [1 ]
Toma, Daniel Mihai [1 ]
Francescangeli, Marco [1 ]
Chatzievangelou, Damianos [2 ]
Nogueras, Marc [1 ]
Martinez, Enoc [1 ]
Carandell, Matias [1 ]
Tangerlini, Michael [3 ]
Thomsen, Laurenz [4 ]
Picardi, Giacomo [2 ]
Le Bris, Marie [5 ]
Dominguez, Luisa [1 ]
Aguzzi, Jacopo [2 ,3 ]
del Rio, Joaquin [1 ]
机构
[1] Univ Politecn Cataluna, Elect Dept, SARTI MAR Res Grp, Vilanova I La Geltru 08800, Spain
[2] Inst Ciencias Mar ICM CSIC, Barcelona 08003, Spain
[3] Stn Zool Naples SZN, I-80121 Naples, Italy
[4] Univ Gothenburg, Dept Marine Sci, Carl Skottsbergs gata 22 B, SE-41319 Gothenburg, Sweden
[5] Ecole Natl Ingenieurs Brest, F-29280 Plouzane, France
基金
欧盟地平线“2020”;
关键词
internet operated vehicles; web interfaces; mission autonomy; ecological monitoring; video imaging; fish species; accumulation curves; DEEP-SEA; MARINE BIODIVERSITY; RHYTHMIC BEHAVIOR; VIDEO; FISHES; DOCKING; CAMERA; TECHNOLOGY; ABUNDANCE; DYNAMICS;
D O I
10.3390/jmse11040857
中图分类号
U6 [水路运输]; P75 [海洋工程];
学科分类号
0814 ; 081505 ; 0824 ; 082401 ;
摘要
The use of marine cabled video observatories with multiparametric environmental data collection capability is becoming relevant for ecological monitoring strategies. Their ecosystem surveying can be enforced in real time, remotely, and continuously, over consecutive days, seasons, and even years. Unfortunately, as most observatories perform such monitoring with fixed cameras, the ecological value of their data is limited to a narrow field of view, possibly not representative of the local habitat heterogeneity. Docked mobile robotic platforms could be used to extend data collection to larger, and hence more ecologically representative areas. Among the various state-of-the-art underwater robotic platforms available, benthic crawlers are excellent candidates to perform ecological monitoring tasks in combination with cabled observatories. Although they are normally used in the deep sea, their high positioning stability, low acoustic signature, and low energetic consumption, especially during stationary phases, make them suitable for coastal operations. In this paper, we present the integration of a benthic crawler into a coastal cabled observatory (OBSEA) to extend its monitoring radius and collect more ecologically representative data. The extension of the monitoring radius was obtained by remotely operating the crawler to enforce back-and-forth drives along specific transects while recording videos with the onboard cameras. The ecological relevance of the monitoring-radius extension was demonstrated by performing a visual census of the species observed with the crawler's cameras in comparison to the observatory's fixed cameras, revealing non-negligible differences. Additionally, the videos recorded from the crawler's cameras during the transects were used to demonstrate an automated photo-mosaic of the seabed for the first time on this class of vehicles. In the present work, the crawler travelled in an area of 40 m away from the OBSEA, producing an extension of the monitoring field of view (FOV), and covering an area approximately 230 times larger than OBSEA's camera. The analysis of the videos obtained from the crawler's and the observatory's cameras revealed differences in the species observed. Future implementation scenarios are also discussed in relation to mission autonomy to perform imaging across spatial heterogeneity gradients around the OBSEA.
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页数:25
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