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A low-cost, autonomous mobile platform for limnological investigations, supported by high-resolution mesoscale airborne imagery

Two complementary measurement systems—built upon an autonomous floating craft and a tethered balloon—for lake research and monitoring are presented. The autonomous vehicle was assembled on a catamaran for stability, and is capable of handling a variety of instrumentation for in situ and near-surface...

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Autores principales: Barry, D. Andrew, Liardon, Jean-Luc, Paccaud, Philippe, Klaus, Pascal, Gujja Shaik, Nawaaz S., Irani Rahaghi, Abolfazl, Zulliger, Ludovic, Béguin, Jérôme, Geissmann, Beat, Tulyakov, Stepan, Ivanov, Anton, Wynn, Htet Kyi, Lemmin, Ulrich
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6375554/
https://www.ncbi.nlm.nih.gov/pubmed/30763327
http://dx.doi.org/10.1371/journal.pone.0210562
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author Barry, D. Andrew
Liardon, Jean-Luc
Paccaud, Philippe
Klaus, Pascal
Gujja Shaik, Nawaaz S.
Irani Rahaghi, Abolfazl
Zulliger, Ludovic
Béguin, Jérôme
Geissmann, Beat
Tulyakov, Stepan
Ivanov, Anton
Wynn, Htet Kyi
Lemmin, Ulrich
author_facet Barry, D. Andrew
Liardon, Jean-Luc
Paccaud, Philippe
Klaus, Pascal
Gujja Shaik, Nawaaz S.
Irani Rahaghi, Abolfazl
Zulliger, Ludovic
Béguin, Jérôme
Geissmann, Beat
Tulyakov, Stepan
Ivanov, Anton
Wynn, Htet Kyi
Lemmin, Ulrich
author_sort Barry, D. Andrew
collection PubMed
description Two complementary measurement systems—built upon an autonomous floating craft and a tethered balloon—for lake research and monitoring are presented. The autonomous vehicle was assembled on a catamaran for stability, and is capable of handling a variety of instrumentation for in situ and near-surface measurements. The catamaran hulls, each equipped with a small electric motor, support rigid decks for arranging equipment. An electric generator provides full autonomy for about 8 h. The modular power supply and instrumentation data management systems are housed in two boxes, which enable rapid setup. Due to legal restrictions in Switzerland (where the craft is routinely used), the platform must be observed from an accompanying boat while in operation. Nevertheless, the control system permits fully autonomous operation, with motion controlled by speed settings and waypoints, as well as obstacle detection. On-board instrumentation is connected to a central hub for data storage, with real-time monitoring of measurements from the accompanying boat. Measurements from the floating platform are complemented by mesoscale imaging from an instrument package attached to a He-filled balloon. The aerial package records thermal and RGB imagery, and transmits it in real-time to a ground station. The balloon can be tethered to the autonomous catamaran or to the accompanying boat. Missions can be modified according to imagery and/or catamaran measurements. Illustrative results showing the surface thermal variations of Lake Geneva demonstrate the versatility of the combined floating platform/balloon imagery system setup for limnological investigations.
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spelling pubmed-63755542019-03-01 A low-cost, autonomous mobile platform for limnological investigations, supported by high-resolution mesoscale airborne imagery Barry, D. Andrew Liardon, Jean-Luc Paccaud, Philippe Klaus, Pascal Gujja Shaik, Nawaaz S. Irani Rahaghi, Abolfazl Zulliger, Ludovic Béguin, Jérôme Geissmann, Beat Tulyakov, Stepan Ivanov, Anton Wynn, Htet Kyi Lemmin, Ulrich PLoS One Research Article Two complementary measurement systems—built upon an autonomous floating craft and a tethered balloon—for lake research and monitoring are presented. The autonomous vehicle was assembled on a catamaran for stability, and is capable of handling a variety of instrumentation for in situ and near-surface measurements. The catamaran hulls, each equipped with a small electric motor, support rigid decks for arranging equipment. An electric generator provides full autonomy for about 8 h. The modular power supply and instrumentation data management systems are housed in two boxes, which enable rapid setup. Due to legal restrictions in Switzerland (where the craft is routinely used), the platform must be observed from an accompanying boat while in operation. Nevertheless, the control system permits fully autonomous operation, with motion controlled by speed settings and waypoints, as well as obstacle detection. On-board instrumentation is connected to a central hub for data storage, with real-time monitoring of measurements from the accompanying boat. Measurements from the floating platform are complemented by mesoscale imaging from an instrument package attached to a He-filled balloon. The aerial package records thermal and RGB imagery, and transmits it in real-time to a ground station. The balloon can be tethered to the autonomous catamaran or to the accompanying boat. Missions can be modified according to imagery and/or catamaran measurements. Illustrative results showing the surface thermal variations of Lake Geneva demonstrate the versatility of the combined floating platform/balloon imagery system setup for limnological investigations. Public Library of Science 2019-02-14 /pmc/articles/PMC6375554/ /pubmed/30763327 http://dx.doi.org/10.1371/journal.pone.0210562 Text en © 2019 Barry et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Barry, D. Andrew
Liardon, Jean-Luc
Paccaud, Philippe
Klaus, Pascal
Gujja Shaik, Nawaaz S.
Irani Rahaghi, Abolfazl
Zulliger, Ludovic
Béguin, Jérôme
Geissmann, Beat
Tulyakov, Stepan
Ivanov, Anton
Wynn, Htet Kyi
Lemmin, Ulrich
A low-cost, autonomous mobile platform for limnological investigations, supported by high-resolution mesoscale airborne imagery
title A low-cost, autonomous mobile platform for limnological investigations, supported by high-resolution mesoscale airborne imagery
title_full A low-cost, autonomous mobile platform for limnological investigations, supported by high-resolution mesoscale airborne imagery
title_fullStr A low-cost, autonomous mobile platform for limnological investigations, supported by high-resolution mesoscale airborne imagery
title_full_unstemmed A low-cost, autonomous mobile platform for limnological investigations, supported by high-resolution mesoscale airborne imagery
title_short A low-cost, autonomous mobile platform for limnological investigations, supported by high-resolution mesoscale airborne imagery
title_sort low-cost, autonomous mobile platform for limnological investigations, supported by high-resolution mesoscale airborne imagery
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6375554/
https://www.ncbi.nlm.nih.gov/pubmed/30763327
http://dx.doi.org/10.1371/journal.pone.0210562
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