Red de monitorización para automatizar el sistema de enfriamiento de un centro de datos
Abstract The objective of this work was to develop a monitoring network of temperature, humidity and air quality in a data center to automate the on and off switching of the cooling, ventilation and air filtering system using IoT (Internet of Things). A network with long-range wireless technology was implemented, consisting of five slave nodes, a master node and a user interface. The slave nodes periodically transmit the value of the three environment variables to the master node. The master node sends the information received from the slaves to a cloud server, so that it can be accessed from a user interface. When the value of any of the variables reaches the configured threshold, the cooling, ventilation and/or filtering system is activated as required. The tests showed that an accuracy of less than ±1.0 °C was obtained in the measurement of temperature, less than ±2 % in the measurement of humidity, less than ±8 µg/m3 in the measurement of air quality and a range of 11.5 kilometers with line of sight was achieved in data transmission over the network. Based on these results, the network can be implemented to monitor sensors and processes in other facilities with this scope.
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Universidad Politécnica Salesiana
2020
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oai:scielo:S1390-860X20200002000872020-07-09Red de monitorización para automatizar el sistema de enfriamiento de un centro de datosVega-Luna,José IgnacioSánchez-Rangel,Francisco JavierSalgado-Guzmán,GerardoCosme-Aceves,José FranciscoTapia-Vargas,Víctor NoéLagos-Acosta,Mario Alberto Automatización centro de datos inalámbrica IoT monitorización temperatura Abstract The objective of this work was to develop a monitoring network of temperature, humidity and air quality in a data center to automate the on and off switching of the cooling, ventilation and air filtering system using IoT (Internet of Things). A network with long-range wireless technology was implemented, consisting of five slave nodes, a master node and a user interface. The slave nodes periodically transmit the value of the three environment variables to the master node. The master node sends the information received from the slaves to a cloud server, so that it can be accessed from a user interface. When the value of any of the variables reaches the configured threshold, the cooling, ventilation and/or filtering system is activated as required. The tests showed that an accuracy of less than ±1.0 °C was obtained in the measurement of temperature, less than ±2 % in the measurement of humidity, less than ±8 µg/m3 in the measurement of air quality and a range of 11.5 kilometers with line of sight was achieved in data transmission over the network. Based on these results, the network can be implemented to monitor sensors and processes in other facilities with this scope.info:eu-repo/semantics/openAccessUniversidad Politécnica SalesianaIngenius. Revista de Ciencia y Tecnología n.24 20202020-12-01info:eu-repo/semantics/articletext/htmlhttp://scielo.senescyt.gob.ec/scielo.php?script=sci_arttext&pid=S1390-860X2020000200087es10.17163/ings.n24.2020.09 |
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Vega-Luna,José Ignacio Sánchez-Rangel,Francisco Javier Salgado-Guzmán,Gerardo Cosme-Aceves,José Francisco Tapia-Vargas,Víctor Noé Lagos-Acosta,Mario Alberto |
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Vega-Luna,José Ignacio Sánchez-Rangel,Francisco Javier Salgado-Guzmán,Gerardo Cosme-Aceves,José Francisco Tapia-Vargas,Víctor Noé Lagos-Acosta,Mario Alberto Red de monitorización para automatizar el sistema de enfriamiento de un centro de datos |
author_facet |
Vega-Luna,José Ignacio Sánchez-Rangel,Francisco Javier Salgado-Guzmán,Gerardo Cosme-Aceves,José Francisco Tapia-Vargas,Víctor Noé Lagos-Acosta,Mario Alberto |
author_sort |
Vega-Luna,José Ignacio |
title |
Red de monitorización para automatizar el sistema de enfriamiento de un centro de datos |
title_short |
Red de monitorización para automatizar el sistema de enfriamiento de un centro de datos |
title_full |
Red de monitorización para automatizar el sistema de enfriamiento de un centro de datos |
title_fullStr |
Red de monitorización para automatizar el sistema de enfriamiento de un centro de datos |
title_full_unstemmed |
Red de monitorización para automatizar el sistema de enfriamiento de un centro de datos |
title_sort |
red de monitorización para automatizar el sistema de enfriamiento de un centro de datos |
description |
Abstract The objective of this work was to develop a monitoring network of temperature, humidity and air quality in a data center to automate the on and off switching of the cooling, ventilation and air filtering system using IoT (Internet of Things). A network with long-range wireless technology was implemented, consisting of five slave nodes, a master node and a user interface. The slave nodes periodically transmit the value of the three environment variables to the master node. The master node sends the information received from the slaves to a cloud server, so that it can be accessed from a user interface. When the value of any of the variables reaches the configured threshold, the cooling, ventilation and/or filtering system is activated as required. The tests showed that an accuracy of less than ±1.0 °C was obtained in the measurement of temperature, less than ±2 % in the measurement of humidity, less than ±8 µg/m3 in the measurement of air quality and a range of 11.5 kilometers with line of sight was achieved in data transmission over the network. Based on these results, the network can be implemented to monitor sensors and processes in other facilities with this scope. |
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Universidad Politécnica Salesiana |
publishDate |
2020 |
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http://scielo.senescyt.gob.ec/scielo.php?script=sci_arttext&pid=S1390-860X2020000200087 |
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