Design and implementation process of a pico-hydro power generation system for teaching and training

In Mexico the development of remote laboratories is incipient, in 2020 the National Council of Humanities, Sciences, and Technologies (CONAHCYT) created a network of virtual laboratories with nine of its public research centers in order to create a virtual space that enables the development of expe...

Full description

Bibliographic Details
Main Authors: Josefa Morales Morales, Horacio Bautista Santos, Rafael Figueroa Díaz, César Manuel Valencia Castillo, Mauricio Leonel Paz González, Isaac Compean Martínez, Pedro Cruz Alcantar
Format: Article
Language:English
Published: Universidad Autónoma de Baja California 2023-11-01
Series:Revista de Ciencias Tecnológicas
Subjects:
Online Access:https://recit.uabc.mx/index.php/revista/article/view/325
_version_ 1797289976614879232
author Josefa Morales Morales
Horacio Bautista Santos
Rafael Figueroa Díaz
César Manuel Valencia Castillo
Mauricio Leonel Paz González
Isaac Compean Martínez
Pedro Cruz Alcantar
author_facet Josefa Morales Morales
Horacio Bautista Santos
Rafael Figueroa Díaz
César Manuel Valencia Castillo
Mauricio Leonel Paz González
Isaac Compean Martínez
Pedro Cruz Alcantar
author_sort Josefa Morales Morales
collection DOAJ
description In Mexico the development of remote laboratories is incipient, in 2020 the National Council of Humanities, Sciences, and Technologies (CONAHCYT) created a network of virtual laboratories with nine of its public research centers in order to create a virtual space that enables the development of experimental and research activities in a distance modality. However, access to virtual laboratories is limited only to its members, and the platforms are still under development. With this motivation, this article presents a multi-institutional project for the design, development, and implementation of a pico-hydraulic system for small-scale power generation for teaching and training purposes with the aim of responding to the current need for distance or virtual teaching of practical knowledge due to the coronavirus disease (COVID‑19) caused by the SARS-CoV-2 virus. For the development of the system, technological innovation tools (QFD, TRIZ) were used, with which the design requirements were obtained considering the users (students and teachers) and the renewable energy-related competence of the curricula. Finally, the satisfaction of the users (students and teachers) with the use of the designed system shows the advantage of including it as part of the practical activities of the subjects to improve the development of power generation, transformation, and transmission system projects.
first_indexed 2024-03-07T19:13:48Z
format Article
id doaj.art-ffc4845d88f54c139535566f1d510b97
institution Directory Open Access Journal
issn 2594-1925
language English
last_indexed 2024-03-07T19:13:48Z
publishDate 2023-11-01
publisher Universidad Autónoma de Baja California
record_format Article
series Revista de Ciencias Tecnológicas
spelling doaj.art-ffc4845d88f54c139535566f1d510b972024-02-29T18:48:33ZengUniversidad Autónoma de Baja CaliforniaRevista de Ciencias Tecnológicas2594-19252023-11-016410.37636/recit.v6n4e325Design and implementation process of a pico-hydro power generation system for teaching and trainingJosefa Morales Morales0Horacio Bautista Santos1Rafael Figueroa Díaz2César Manuel Valencia Castillo3Mauricio Leonel Paz González4Isaac Compean Martínez5Pedro Cruz Alcantar6Unidad Académica Multidisciplinaria Región Altiplano, Universidad Autónoma de San Luis Potosí UASLP–UAMRA, Carretera Cedral Km, 5+600 Ejido San José de las Trojes, Matehuala, San Luis Potosí 78700, México Tecnológico Nacional de México/ Instituto Tecnológico Superior de Chicontepec, Calle Barrio Dos Caminos No. 22. Colonia Barrio Dos Caminos, Chicontepec, Veracruz 92709, México Tecnológico Nacional de México/ Instituto Tecnológico Superior de Tantoyuca, Desviación Lindero Tametate S/N, Colonia La Morita, Tantoyuca, Veracruz 92100, MéxicoDepartamento de Ingeniería Eléctrica y Electrónica, Instituto Tecnológico de Sonora, ITSON, 85130. Cd Obregón, MéxicoCoordinación Académica Región Huasteca Sur, Universidad Autónoma de San Luis Potosí UASLP–CARHS, 79960 Tamazunchale, San Luis PotosíFacultad de Ciencias de la Ingeniería y Tecnología (FCITEC), Universidad Autónoma de Baja California, Unidad Valle de las Palmas Tijuana, Baja California, MéxicoUnidad Académica Multidisciplinaria Región Altiplano, Universidad Autónoma de San Luis Potosí UASLP–UAMRA, Carretera Cedral Km, 5+600 Ejido San José de las Trojes, Matehuala, San Luis Potosí 78700, México Unidad Académica Multidisciplinaria Región Altiplano, Universidad Autónoma de San Luis Potosí UASLP–UAMRA, Carretera Cedral Km, 5+600 Ejido San José de las Trojes, Matehuala, San Luis Potosí 78700, México In Mexico the development of remote laboratories is incipient, in 2020 the National Council of Humanities, Sciences, and Technologies (CONAHCYT) created a network of virtual laboratories with nine of its public research centers in order to create a virtual space that enables the development of experimental and research activities in a distance modality. However, access to virtual laboratories is limited only to its members, and the platforms are still under development. With this motivation, this article presents a multi-institutional project for the design, development, and implementation of a pico-hydraulic system for small-scale power generation for teaching and training purposes with the aim of responding to the current need for distance or virtual teaching of practical knowledge due to the coronavirus disease (COVID‑19) caused by the SARS-CoV-2 virus. For the development of the system, technological innovation tools (QFD, TRIZ) were used, with which the design requirements were obtained considering the users (students and teachers) and the renewable energy-related competence of the curricula. Finally, the satisfaction of the users (students and teachers) with the use of the designed system shows the advantage of including it as part of the practical activities of the subjects to improve the development of power generation, transformation, and transmission system projects. https://recit.uabc.mx/index.php/revista/article/view/325Applications of industry 4.0Learning and trainingMechanical designPico-hydro systems
spellingShingle Josefa Morales Morales
Horacio Bautista Santos
Rafael Figueroa Díaz
César Manuel Valencia Castillo
Mauricio Leonel Paz González
Isaac Compean Martínez
Pedro Cruz Alcantar
Design and implementation process of a pico-hydro power generation system for teaching and training
Revista de Ciencias Tecnológicas
Applications of industry 4.0
Learning and training
Mechanical design
Pico-hydro systems
title Design and implementation process of a pico-hydro power generation system for teaching and training
title_full Design and implementation process of a pico-hydro power generation system for teaching and training
title_fullStr Design and implementation process of a pico-hydro power generation system for teaching and training
title_full_unstemmed Design and implementation process of a pico-hydro power generation system for teaching and training
title_short Design and implementation process of a pico-hydro power generation system for teaching and training
title_sort design and implementation process of a pico hydro power generation system for teaching and training
topic Applications of industry 4.0
Learning and training
Mechanical design
Pico-hydro systems
url https://recit.uabc.mx/index.php/revista/article/view/325
work_keys_str_mv AT josefamoralesmorales designandimplementationprocessofapicohydropowergenerationsystemforteachingandtraining
AT horaciobautistasantos designandimplementationprocessofapicohydropowergenerationsystemforteachingandtraining
AT rafaelfigueroadiaz designandimplementationprocessofapicohydropowergenerationsystemforteachingandtraining
AT cesarmanuelvalenciacastillo designandimplementationprocessofapicohydropowergenerationsystemforteachingandtraining
AT mauricioleonelpazgonzalez designandimplementationprocessofapicohydropowergenerationsystemforteachingandtraining
AT isaaccompeanmartinez designandimplementationprocessofapicohydropowergenerationsystemforteachingandtraining
AT pedrocruzalcantar designandimplementationprocessofapicohydropowergenerationsystemforteachingandtraining