Implementation of a wireless network for the Simón Bolívar Higher Technological Institute that allows controlled navigation by time ranges

Authors

Keywords:

Wireless, infrastructure, navigation, internet, Access Point, captive portal

Abstract

The importance of the execution of this degree project is to benefit the student and teaching sector of the Simón Bolívar Higher Technological Institute, with the purpose of being able to provide a wireless network connection, with the ability to provide internet through a Wireless network. For this project, a network design has been carried out, based on a study of the geographical area in order to expand the connection to all the careers that currently operate at the Simón Bolivar Higher Technological Institute; This analysis provides coverage of the entire geographical area of the educational center, taking as priority the library, main courtyards, Classroom Blocks A, Electrical and Electronics classroom blocks. Through this project the institution will be able to enjoy a Wireless network infrastructure that allows navigation and   access to the Internet at the Simón Bolívar Higher Technological Institute, when carried out, it is feasible to have greater use of the Internet connection, within the study classrooms, that allows quick access to technological platforms on the web, in order to provide better performance of our academic activities. The main focus of this project is that low-income students will have benefits by accessing the Internet through the access platform, which will be controlling the navigation of the students who connect to the network by time ranges, so that they can carry out their activities. academics. For this project, three Access Point devices were installed that were initially reviewed and analyzed since they have the specifications that are in accordance with the requirements; They were installed in strategic places, such as electronic coordination, library and rectory courtyard, for security purposes, a captive portal was used as a means of access to the network, this allows the network to be secure and reliable.

Keywords: Wireless, infrastructure, navigation, internet, Access Point, captive portal.

Downloads

Download data is not yet available.

References

Andreu, J. (2011). Redes Inalambricas (Servicios en red). Madrid: Editex, S.A. Burdova, C. (2022). AVG; ¿Qué es un router y cuál es su función? Obtenido de https://www.avg.com/es/signal/what-is-a-router

Castillo, J. A. (2019). Profesionalreview; Fibra óptica: qué es, para qué se usa y cómo funciona. Obtenido de https://www.profesionalreview.com/2019/02/15/fibra-optica-que-es/

Databyte Networks. (2021). Databyte Networks; Los transceivers o transceptor ópticos y su codificación. Obtenido de https://www.databyte- networks.com.mx/industry-news/los-transceivers-o-transceptor-opticos-y-su- codificacion/

Fumero, H. (2014). Fibraopticahoy; Comentarios sobre el término PatchCord. Obtenido de https://www.fibraopticahoy.com/blog/comentarios- sobre-el-termino-patchcord/

Huerta, G. (2020). Siticed; ¿Qué es el Interruptor Termomagnético? Obtenido de https://siticed.com.mx/2020/03/31/que-es-el-interruptor- termomagnetico/

ITILCOM. (2020). ITILCOM; ¿Qué es un switch? Funciones y características. Obtenido de https://www.itilcom.com/blog/que-es-un-switch- funciones-y-caracteristicas/

Limones, E. (2021). OpenWebinar; Topología de redes informáticas. Obtenido de https://openwebinars.net/blog/topologia-de-redes-informaticas/

Perez Porto, J., & Gardey, A. (2011). Definicion.de;Definición de cable UTP. Obtenido de https://definicion.de/cable-utp/

QUINTERO, A. P. (2008). Repositorio Universidad EAFIT; REDES INALÁMBRICAS. Obtenido de https://repository.eafit.edu.co/bitstream/handle/10784/2444/PerezQuintero_Edwi nAlejandro_2008.pdf?sequence=1

Rodriguez, A. (2020). cablesyconectoreshoy;Lo qué todo ingeniero debería saber sobre IEEE 802.3bt PoE. Obtenido de https://www.cablesyconectoreshoy.com/lo-que-todo-ingeniero-deberia-saber- sobre-ieee-802-3bt-poe/

Sáenz, R. (2021). Elvatron; ¿Qué es una fusionadora o empalmadora de Fibra Óptica? Obtenido de https://blog.elvatron.com/construcci%C3%B3n-de- redes-de-fibra-%C3%B3ptica/fibra-%C3%B3ptica

Standley, C. (2021). Purple; Portales cautivos: ¿para qué sirven y cómo funcionan? Obtenido de https://purple.ai/es/blogs/portales-cautivos-para- que-sirven-y-como-funcionan/

TP-Link. (2018). Ksa Smart, TP-Link; Perfil Corporativo. Obtenido de https://www.tp- link.com/ec/about-us/corporate-profile/

TP-Link. (2018). TP-Link; Wi-Fi Router. Obtenido de https://www.tp- link.com/ec/about-us/corporate-profile/

TP-Link. (2023). TP-Link; Contolador Omada OC300; . Obtenido de https://www.tp- link.com/ec/business-networking/omada-sdn-controller/oc300/

Published

2024-07-10

How to Cite

Quishpi-Lucero, J. D., Méndez-Guano, C. L., & Salvatierra-Zambrano, H. M. (2024). Implementation of a wireless network for the Simón Bolívar Higher Technological Institute that allows controlled navigation by time ranges. Revista Científica Arbitrada De Investigación En Comunicación, Marketing Y Empresa REICOMUNICAR. ISSN 2737-6354., 7(14), 124-138. Retrieved from https://www.reicomunicar.org/index.php/reicomunicar/article/view/299