First testing of an AUV mission planning and guidance system for water quality monitoring and fish behavior observation in net cage fish farming

Recently, underwater vehicles have become low cost, reliable and affordable platforms for performing various underwater tasks. While many aquaculture systems are closed with no harmful output, open net cage fish farms and land-based fish farms can discharge significant amounts of wastewater containi...

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Main Authors: D. Karimanzira, M. Jacobi, T. Pfuetzenreuter, T. Rauschenbach, M. Eichhorn, R. Taubert, C. Ament
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2014-12-01
Series:Information Processing in Agriculture
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214317314000249
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spelling doaj-3c9a755bd68644919d1139e4fd5f67e92021-04-02T13:43:05ZengKeAi Communications Co., Ltd.Information Processing in Agriculture2214-31732014-12-011213114010.1016/j.inpa.2014.12.001First testing of an AUV mission planning and guidance system for water quality monitoring and fish behavior observation in net cage fish farmingD. Karimanzira0M. Jacobi1T. Pfuetzenreuter2T. Rauschenbach3M. Eichhorn4R. Taubert5C. Ament6Fraunhofer Advanced System Technology (AST), Am Vogelherd 50, 98693 Ilmenau, GermanyFraunhofer Advanced System Technology (AST), Am Vogelherd 50, 98693 Ilmenau, GermanyFraunhofer Advanced System Technology (AST), Am Vogelherd 50, 98693 Ilmenau, GermanyFraunhofer Advanced System Technology (AST), Am Vogelherd 50, 98693 Ilmenau, GermanyTechnical University Ilmenau, Helmholtzplatz 5, 98693 Ilmenau, GermanyTechnical University Ilmenau, Helmholtzplatz 5, 98693 Ilmenau, GermanyTechnical University Ilmenau, Helmholtzplatz 5, 98693 Ilmenau, GermanyRecently, underwater vehicles have become low cost, reliable and affordable platforms for performing various underwater tasks. While many aquaculture systems are closed with no harmful output, open net cage fish farms and land-based fish farms can discharge significant amounts of wastewater containing nutrients, chemicals, and pharmaceuticals that impact on the surrounding environment. Although aquaculture development has often occurred outside a regulatory framework, government oversight is increasingly common at both the seafood quality control level, and at baseline initiatives addressing the basic problem of pollution generated by culture operations, e.g. the European marine and maritime directives. This requires regular, sustainable and cost-effective monitoring of the water quality. Such monitoring needs devices to detect the water quality in a large sea area at different depths in real time. This paper presents a concept for a guidance system for a carrier (an autonomous underwater vehicle) of such devices for the automated detection and analysis of water quality parameters.http://www.sciencedirect.com/science/article/pii/S2214317314000249Autonomous underwater vehicleWater quality monitoringVehicle guidance
collection DOAJ
language English
format Article
sources DOAJ
author D. Karimanzira
M. Jacobi
T. Pfuetzenreuter
T. Rauschenbach
M. Eichhorn
R. Taubert
C. Ament
spellingShingle D. Karimanzira
M. Jacobi
T. Pfuetzenreuter
T. Rauschenbach
M. Eichhorn
R. Taubert
C. Ament
First testing of an AUV mission planning and guidance system for water quality monitoring and fish behavior observation in net cage fish farming
Information Processing in Agriculture
Autonomous underwater vehicle
Water quality monitoring
Vehicle guidance
author_facet D. Karimanzira
M. Jacobi
T. Pfuetzenreuter
T. Rauschenbach
M. Eichhorn
R. Taubert
C. Ament
author_sort D. Karimanzira
title First testing of an AUV mission planning and guidance system for water quality monitoring and fish behavior observation in net cage fish farming
title_short First testing of an AUV mission planning and guidance system for water quality monitoring and fish behavior observation in net cage fish farming
title_full First testing of an AUV mission planning and guidance system for water quality monitoring and fish behavior observation in net cage fish farming
title_fullStr First testing of an AUV mission planning and guidance system for water quality monitoring and fish behavior observation in net cage fish farming
title_full_unstemmed First testing of an AUV mission planning and guidance system for water quality monitoring and fish behavior observation in net cage fish farming
title_sort first testing of an auv mission planning and guidance system for water quality monitoring and fish behavior observation in net cage fish farming
publisher KeAi Communications Co., Ltd.
series Information Processing in Agriculture
issn 2214-3173
publishDate 2014-12-01
description Recently, underwater vehicles have become low cost, reliable and affordable platforms for performing various underwater tasks. While many aquaculture systems are closed with no harmful output, open net cage fish farms and land-based fish farms can discharge significant amounts of wastewater containing nutrients, chemicals, and pharmaceuticals that impact on the surrounding environment. Although aquaculture development has often occurred outside a regulatory framework, government oversight is increasingly common at both the seafood quality control level, and at baseline initiatives addressing the basic problem of pollution generated by culture operations, e.g. the European marine and maritime directives. This requires regular, sustainable and cost-effective monitoring of the water quality. Such monitoring needs devices to detect the water quality in a large sea area at different depths in real time. This paper presents a concept for a guidance system for a carrier (an autonomous underwater vehicle) of such devices for the automated detection and analysis of water quality parameters.
topic Autonomous underwater vehicle
Water quality monitoring
Vehicle guidance
url http://www.sciencedirect.com/science/article/pii/S2214317314000249
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