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Towards a Real-Time Embedded System for Water Monitoring Installed in a Robotic Sailboat

Problems related to quality (and quantity) of water in natural resources or in artificial reservoirs are frequently arising and are at the center of attention of authorities and governments around the world. Many times the monitoring is not performed in an efficient time frame and a precise manner,...

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Detalles Bibliográficos
Autores principales: da Silva Junior, Andouglas Goncalves, de Lima Sa, Sarah Thomaz, dos Santos, Davi Henrique, de Negreiros, Álvaro Pinto Ferrnandes, de Souza Silva, João Moreno Vilas Boas, Álvarez Jácobo, Justo Emílio, Garcia Gonçalves, Luiz Marcos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5017391/
https://www.ncbi.nlm.nih.gov/pubmed/27509506
http://dx.doi.org/10.3390/s16081226
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author da Silva Junior, Andouglas Goncalves
de Lima Sa, Sarah Thomaz
dos Santos, Davi Henrique
de Negreiros, Álvaro Pinto Ferrnandes
de Souza Silva, João Moreno Vilas Boas
Álvarez Jácobo, Justo Emílio
Garcia Gonçalves, Luiz Marcos
author_facet da Silva Junior, Andouglas Goncalves
de Lima Sa, Sarah Thomaz
dos Santos, Davi Henrique
de Negreiros, Álvaro Pinto Ferrnandes
de Souza Silva, João Moreno Vilas Boas
Álvarez Jácobo, Justo Emílio
Garcia Gonçalves, Luiz Marcos
author_sort da Silva Junior, Andouglas Goncalves
collection PubMed
description Problems related to quality (and quantity) of water in natural resources or in artificial reservoirs are frequently arising and are at the center of attention of authorities and governments around the world. Many times the monitoring is not performed in an efficient time frame and a precise manner, whereas the adoption of fast and punctual solutions would undoubtedly improve the water quality and consequently enhance the life of people. To minimize or diminish such kinds of problems, we propose an architecture for sensors installed in a robotic platform, an autonomous sail boat, able to acquire raw data relative to water quality, to process and make them available to people that might be interested in such information. The main contributions are the sensors architecture itself, which uses low cost sensors, with practical experimentation done with a prototype. Results show data collected for points in lakes and rivers in the northeast of Brazil. This embedded system is fixed in the sailboat robot with the intention to facilitate the study of water quality for long endurance missions. This robot can help monitoring water bodies in a more consistent manner. Nonetheless the system can also be used with fixed vases or buoys in strategic points.
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spelling pubmed-50173912016-09-22 Towards a Real-Time Embedded System for Water Monitoring Installed in a Robotic Sailboat da Silva Junior, Andouglas Goncalves de Lima Sa, Sarah Thomaz dos Santos, Davi Henrique de Negreiros, Álvaro Pinto Ferrnandes de Souza Silva, João Moreno Vilas Boas Álvarez Jácobo, Justo Emílio Garcia Gonçalves, Luiz Marcos Sensors (Basel) Article Problems related to quality (and quantity) of water in natural resources or in artificial reservoirs are frequently arising and are at the center of attention of authorities and governments around the world. Many times the monitoring is not performed in an efficient time frame and a precise manner, whereas the adoption of fast and punctual solutions would undoubtedly improve the water quality and consequently enhance the life of people. To minimize or diminish such kinds of problems, we propose an architecture for sensors installed in a robotic platform, an autonomous sail boat, able to acquire raw data relative to water quality, to process and make them available to people that might be interested in such information. The main contributions are the sensors architecture itself, which uses low cost sensors, with practical experimentation done with a prototype. Results show data collected for points in lakes and rivers in the northeast of Brazil. This embedded system is fixed in the sailboat robot with the intention to facilitate the study of water quality for long endurance missions. This robot can help monitoring water bodies in a more consistent manner. Nonetheless the system can also be used with fixed vases or buoys in strategic points. MDPI 2016-08-08 /pmc/articles/PMC5017391/ /pubmed/27509506 http://dx.doi.org/10.3390/s16081226 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
da Silva Junior, Andouglas Goncalves
de Lima Sa, Sarah Thomaz
dos Santos, Davi Henrique
de Negreiros, Álvaro Pinto Ferrnandes
de Souza Silva, João Moreno Vilas Boas
Álvarez Jácobo, Justo Emílio
Garcia Gonçalves, Luiz Marcos
Towards a Real-Time Embedded System for Water Monitoring Installed in a Robotic Sailboat
title Towards a Real-Time Embedded System for Water Monitoring Installed in a Robotic Sailboat
title_full Towards a Real-Time Embedded System for Water Monitoring Installed in a Robotic Sailboat
title_fullStr Towards a Real-Time Embedded System for Water Monitoring Installed in a Robotic Sailboat
title_full_unstemmed Towards a Real-Time Embedded System for Water Monitoring Installed in a Robotic Sailboat
title_short Towards a Real-Time Embedded System for Water Monitoring Installed in a Robotic Sailboat
title_sort towards a real-time embedded system for water monitoring installed in a robotic sailboat
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5017391/
https://www.ncbi.nlm.nih.gov/pubmed/27509506
http://dx.doi.org/10.3390/s16081226
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