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Enhancing the coverage of underwater robot based Mn-crust survey area by asing a multibeam sonar

Enhancing the coverage of underwater robot based Mn-crust survey area by asing a multibeam sonar
Enhancing the coverage of underwater robot based Mn-crust survey area by asing a multibeam sonar

The authors conducted a field survey of Cobalt-rich Manganese Crusts (Mn-crusts) using a visual 3D mapping system and a multibeam sonar mounted on an underwater robot for studying the distribution of these resources on the seafloor. The multibeam sonar covers an area 4 times that of the visual system and generates bathymetric and backscatter information. This paper shows preliminary results from field trials, showing the correlations between the multibeam and visual mapping data in Mn-crust covered seamounts. Further, the possibility of characterization of the seafloor using multibeam data is investigated by classifying the multibeam data using transfer learning of a classifier trained on visual mapping data. It is advantageous because co-located visual data can be used as a ground truth for multibeam classification. Mn-crust volumetric estimation methods, currently limited to visually mapped regions, can be extended further using these results.

IEEE
Neettiyath, Umesh
50a478b6-f18e-41b7-886d-11052eaa68b7
Sangekar, Mehul
196e042f-c144-4310-aab1-1b8e963ac417
Nagano, Kazunori
49129778-f2c4-4e6c-ac1d-8ac67dce16a4
Koike, Tetsu
ba733b87-9ce6-4ec5-a4b6-7e57ff7a739d
Thornton, Blair
8293beb5-c083-47e3-b5f0-d9c3cee14be9
Sugimatsu, Harumi
397df4fb-cbf7-4a12-abcf-df2245976a37
Hino, Hikari
0d6420b1-4b00-47ef-8b1e-3a5bd33d6934
Suzuki, Akiko
a40c8d38-015b-4d6e-aa22-a9d9c9a66f1e
Neettiyath, Umesh
50a478b6-f18e-41b7-886d-11052eaa68b7
Sangekar, Mehul
196e042f-c144-4310-aab1-1b8e963ac417
Nagano, Kazunori
49129778-f2c4-4e6c-ac1d-8ac67dce16a4
Koike, Tetsu
ba733b87-9ce6-4ec5-a4b6-7e57ff7a739d
Thornton, Blair
8293beb5-c083-47e3-b5f0-d9c3cee14be9
Sugimatsu, Harumi
397df4fb-cbf7-4a12-abcf-df2245976a37
Hino, Hikari
0d6420b1-4b00-47ef-8b1e-3a5bd33d6934
Suzuki, Akiko
a40c8d38-015b-4d6e-aa22-a9d9c9a66f1e

Neettiyath, Umesh, Sangekar, Mehul, Nagano, Kazunori, Koike, Tetsu, Thornton, Blair, Sugimatsu, Harumi, Hino, Hikari and Suzuki, Akiko (2023) Enhancing the coverage of underwater robot based Mn-crust survey area by asing a multibeam sonar. In 2023 IEEE Underwater Technology (UT). IEEE. 5 pp . (doi:10.1109/UT49729.2023.10103443).

Record type: Conference or Workshop Item (Paper)

Abstract

The authors conducted a field survey of Cobalt-rich Manganese Crusts (Mn-crusts) using a visual 3D mapping system and a multibeam sonar mounted on an underwater robot for studying the distribution of these resources on the seafloor. The multibeam sonar covers an area 4 times that of the visual system and generates bathymetric and backscatter information. This paper shows preliminary results from field trials, showing the correlations between the multibeam and visual mapping data in Mn-crust covered seamounts. Further, the possibility of characterization of the seafloor using multibeam data is investigated by classifying the multibeam data using transfer learning of a classifier trained on visual mapping data. It is advantageous because co-located visual data can be used as a ground truth for multibeam classification. Mn-crust volumetric estimation methods, currently limited to visually mapped regions, can be extended further using these results.

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More information

e-pub ahead of print date: 23 April 2023
Venue - Dates: 2023 IEEE International Symposium on Underwater Technology, UT 2023, , Tokyo, Japan, 2023-03-06 - 2023-03-09

Identifiers

Local EPrints ID: 490986
URI: http://eprints.soton.ac.uk/id/eprint/490986
PURE UUID: d7022a77-1de8-408c-918f-5b7c6fe68157

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Date deposited: 11 Jun 2024 16:31
Last modified: 11 Jun 2024 16:31

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Contributors

Author: Umesh Neettiyath
Author: Mehul Sangekar
Author: Kazunori Nagano
Author: Tetsu Koike
Author: Blair Thornton
Author: Harumi Sugimatsu
Author: Hikari Hino
Author: Akiko Suzuki

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