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Educational Mechatronics and Internet of Things: A Case Study on Dynamic Systems Using MEIoT Weather Station

This paper presents the design and development of an IoT device, called MEIoT weather station, which combines the Educational Mechatronics and IoT to develop the required knowledge and skills for Industry 4.0. MEIoT weather station connects to the internet, measures eight weather variables, and uplo...

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Autores principales: Carlos-Mancilla, Miriam A., Luque-Vega, Luis F., Guerrero-Osuna, Héctor A., Ornelas-Vargas, Gerardo, Aguilar-Molina, Yehoshua, González-Jiménez, Luis E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7795622/
https://www.ncbi.nlm.nih.gov/pubmed/33383917
http://dx.doi.org/10.3390/s21010181
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author Carlos-Mancilla, Miriam A.
Luque-Vega, Luis F.
Guerrero-Osuna, Héctor A.
Ornelas-Vargas, Gerardo
Aguilar-Molina, Yehoshua
González-Jiménez, Luis E.
author_facet Carlos-Mancilla, Miriam A.
Luque-Vega, Luis F.
Guerrero-Osuna, Héctor A.
Ornelas-Vargas, Gerardo
Aguilar-Molina, Yehoshua
González-Jiménez, Luis E.
author_sort Carlos-Mancilla, Miriam A.
collection PubMed
description This paper presents the design and development of an IoT device, called MEIoT weather station, which combines the Educational Mechatronics and IoT to develop the required knowledge and skills for Industry 4.0. MEIoT weather station connects to the internet, measures eight weather variables, and upload the sensed data to the cloud. The MEIoT weather station is the first device working with the IoT architecture of the National Digital Observatory of Intelligent Environments. In addition, an IoT open platform, GUI-MEIoT, serves as a graphic user interface. GUI-MEIoT is used to visualize the real-time data of the weather variables, it also shows the historical data collected, and allows to export them to a csv file. Finally, an OBNiSE architecture application to Engineering Education is presented with a dynamic system case of study that includes the instructional design carried out within the Educational Mechatronics Conceptual Framework (EMCF) to show the relevance of this proposal. This work main contribution to the state of art is the design and integration of the OBNiSE architecture within the EMCF offering the possibility to add more IoT devices for several smart domains such as smart campus, smart cities, smart people and smart industries.
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spelling pubmed-77956222021-01-10 Educational Mechatronics and Internet of Things: A Case Study on Dynamic Systems Using MEIoT Weather Station Carlos-Mancilla, Miriam A. Luque-Vega, Luis F. Guerrero-Osuna, Héctor A. Ornelas-Vargas, Gerardo Aguilar-Molina, Yehoshua González-Jiménez, Luis E. Sensors (Basel) Article This paper presents the design and development of an IoT device, called MEIoT weather station, which combines the Educational Mechatronics and IoT to develop the required knowledge and skills for Industry 4.0. MEIoT weather station connects to the internet, measures eight weather variables, and upload the sensed data to the cloud. The MEIoT weather station is the first device working with the IoT architecture of the National Digital Observatory of Intelligent Environments. In addition, an IoT open platform, GUI-MEIoT, serves as a graphic user interface. GUI-MEIoT is used to visualize the real-time data of the weather variables, it also shows the historical data collected, and allows to export them to a csv file. Finally, an OBNiSE architecture application to Engineering Education is presented with a dynamic system case of study that includes the instructional design carried out within the Educational Mechatronics Conceptual Framework (EMCF) to show the relevance of this proposal. This work main contribution to the state of art is the design and integration of the OBNiSE architecture within the EMCF offering the possibility to add more IoT devices for several smart domains such as smart campus, smart cities, smart people and smart industries. MDPI 2020-12-29 /pmc/articles/PMC7795622/ /pubmed/33383917 http://dx.doi.org/10.3390/s21010181 Text en © 2020 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
Carlos-Mancilla, Miriam A.
Luque-Vega, Luis F.
Guerrero-Osuna, Héctor A.
Ornelas-Vargas, Gerardo
Aguilar-Molina, Yehoshua
González-Jiménez, Luis E.
Educational Mechatronics and Internet of Things: A Case Study on Dynamic Systems Using MEIoT Weather Station
title Educational Mechatronics and Internet of Things: A Case Study on Dynamic Systems Using MEIoT Weather Station
title_full Educational Mechatronics and Internet of Things: A Case Study on Dynamic Systems Using MEIoT Weather Station
title_fullStr Educational Mechatronics and Internet of Things: A Case Study on Dynamic Systems Using MEIoT Weather Station
title_full_unstemmed Educational Mechatronics and Internet of Things: A Case Study on Dynamic Systems Using MEIoT Weather Station
title_short Educational Mechatronics and Internet of Things: A Case Study on Dynamic Systems Using MEIoT Weather Station
title_sort educational mechatronics and internet of things: a case study on dynamic systems using meiot weather station
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7795622/
https://www.ncbi.nlm.nih.gov/pubmed/33383917
http://dx.doi.org/10.3390/s21010181
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