Resumen:
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[EN] The design of monitoring systems for marine areas has increased in the last years. One of the many advantages of wireless sensor networks is the quick process in data acquisition. The information from sensors can be ...[+]
[EN] The design of monitoring systems for marine areas has increased in the last years. One of the many advantages of wireless sensor networks is the quick process in data acquisition. The information from sensors can be processed, stored, and transmitted using protocols efficiently designed to energy saving and establishing the fastest routes. The processing and storing of data can be very useful for taking intelligent decisions for improving the water quality. The monitoring of water exchange in aquaculture tanks is very important to monitor the fish welfare. Thus, this paper presents the design, deployment, and test of a smart data gathering system for monitoring several parameters in aquaculture tanks using a wireless sensor network. The system based on a server is able to request and collect data from several nodes and store them in a database. This information can be postprocessed to take efficient decisions. The paper also presents the design of a conductivity sensor and a level sensor. These sensors are installed in several aquaculture tanks. The system was implemented using Flyport modules. Finally, the data gathering system was tested in terms of consumed bandwidth and the delay Transmission Control Protocol (TCP) packets delivering data from the sensors.
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Agradecimientos:
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This work has been partially supported by the Postdoctoral
Scholarship “Contratos Postdoctorales UPV 2014 (PAID‐
10‐14)” of the “Universitat Politècnica de València,” by the
“Programa para la Formación de Personal ...[+]
This work has been partially supported by the Postdoctoral
Scholarship “Contratos Postdoctorales UPV 2014 (PAID‐
10‐14)” of the “Universitat Politècnica de València,” by the
“Programa para la Formación de Personal Investigador—
(FPI‐2015‐S2‐884)” of the “Universitat Politècnica de
València,” and by the pre‐doctoral student grant “Ayudas para
contratos predoctorales de Formación del Profesorado
Universitario FPU (Convocatoria 2014)” Reference: FPU14/
02953 by the “Ministerio de Educación, Cultura y Deporte,”
by Instituto de Telecomunicações, Next Generation Networks
and Applications Group (NetGNA), and Covilhã Delegation,
by the National Funding from the FCT—Fundação para a
Ciência e a Tecnologia through the UID/EEA/500008/2013
Project, by the Government of Russian Federation, Grant
074‐U01, and by Finep, with resources from Funttel, Grant
No. 01.14.0231.00, under the Radiocommunication Reference Center (Centro de Referência em Radiocomunicações
—CRR) project of the National Institute of Telecommunications (Instituto Nacional de Telecomunicações—Inatel),
Brazil.
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