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Towards autonomy: A recommender system for the determination of trim and flight parameters for Seagliders

Towards autonomy: A recommender system for the determination of trim and flight parameters for Seagliders
Towards autonomy: A recommender system for the determination of trim and flight parameters for Seagliders
Currently, pilots maximise the performance of Seaglider underwater gliders by manually selecting their set-up parameters. Building on existing procedures based on the assumption of steady-state motions, a recommender system for the trim and flight parameters has been developed to aid trainee pilots and enable round-the-clock operations. The system has been validated with data from 12 missions run in waters off the United Kingdom and Australia, representative of a range of oceanographic conditions. The recommended trim parameters present a maximum difference of 14% from the values selected by the pilots, whereas pilots are found not to change the flight parameters. Additionally, suggestions are made to improve operational practices to further improve the accuracy of the recommender system. As a result, the developed system is expected to greatly help trainee pilots achieve expertise in a much smaller time frame than standard practice. Additionally, thanks to its high precision, the recommender system can be used to autonomously select the trim and flight parameters of Seagliders for night operations in the future.
0029-8018
Anderlini, Enrico
e4ed7112-012d-453e-adac-33bf0ca4c0af
Harris, Catherine
34cf0f4b-4e11-4ed2-a3ad-5596dd765572
Phillips, Alexander B.
f565b1da-6881-4e2a-8729-c082b869028f
Lorenzo Lopez, Alvaro
ce3bd81a-c28c-4d68-bc62-bb2bfc383f4e
Woo, Mun
006d0d72-8d94-4df9-bc46-897cb1a54399
Thomas, Giles
140e1e6c-4a56-4f49-876d-409d9ef32cc8
Anderlini, Enrico
e4ed7112-012d-453e-adac-33bf0ca4c0af
Harris, Catherine
34cf0f4b-4e11-4ed2-a3ad-5596dd765572
Phillips, Alexander B.
f565b1da-6881-4e2a-8729-c082b869028f
Lorenzo Lopez, Alvaro
ce3bd81a-c28c-4d68-bc62-bb2bfc383f4e
Woo, Mun
006d0d72-8d94-4df9-bc46-897cb1a54399
Thomas, Giles
140e1e6c-4a56-4f49-876d-409d9ef32cc8

Anderlini, Enrico, Harris, Catherine, Phillips, Alexander B., Lorenzo Lopez, Alvaro, Woo, Mun and Thomas, Giles (2019) Towards autonomy: A recommender system for the determination of trim and flight parameters for Seagliders. Ocean Engineering, 189, [106338]. (doi:10.1016/j.oceaneng.2019.106338).

Record type: Article

Abstract

Currently, pilots maximise the performance of Seaglider underwater gliders by manually selecting their set-up parameters. Building on existing procedures based on the assumption of steady-state motions, a recommender system for the trim and flight parameters has been developed to aid trainee pilots and enable round-the-clock operations. The system has been validated with data from 12 missions run in waters off the United Kingdom and Australia, representative of a range of oceanographic conditions. The recommended trim parameters present a maximum difference of 14% from the values selected by the pilots, whereas pilots are found not to change the flight parameters. Additionally, suggestions are made to improve operational practices to further improve the accuracy of the recommender system. As a result, the developed system is expected to greatly help trainee pilots achieve expertise in a much smaller time frame than standard practice. Additionally, thanks to its high precision, the recommender system can be used to autonomously select the trim and flight parameters of Seagliders for night operations in the future.

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More information

Accepted/In Press date: 17 August 2019
e-pub ahead of print date: 23 August 2019
Published date: 1 October 2019

Identifiers

Local EPrints ID: 435952
URI: http://eprints.soton.ac.uk/id/eprint/435952
ISSN: 0029-8018
PURE UUID: 5994d62f-2527-4dbd-b68b-3f35809b82e9
ORCID for Alexander B. Phillips: ORCID iD orcid.org/0000-0003-3234-8506

Catalogue record

Date deposited: 25 Nov 2019 17:30
Last modified: 17 Mar 2024 03:00

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Contributors

Author: Enrico Anderlini
Author: Catherine Harris
Author: Alexander B. Phillips ORCID iD
Author: Alvaro Lorenzo Lopez
Author: Mun Woo
Author: Giles Thomas

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