Articles

Characterization and Analysis of Water Quality in Urban Environments through the Implementation of an Embedded System with IoT Technology

Authors

Abstract

This study aims to characterize and analyze water quality in urban environments using an IoT embedded system, focusing on San Camilo’s community of Quevedo, Ecuador, where population growth has increased the demand for drinking water. An embedded system was designed to make use of a microcontroller and sensors to monitor critical water quality parameters in real time. The collected data is transmitted to a cloud platform for storage, analysis, and visualization. Spearman's correlation coefficient was preferred for statistical analysis of the data. This allowed for the identification of patterns and relationships between the variables examined. The data revealed significant associations in non-linear data, facilitating a decision regarding the development of predictive models for water management and treatment. The results demonstrate the feasibility and efficiency of using IoT technologies in the continuous monitoring of water quality, offering a scientific basis for the collection and processing of relevant data on the quality of drinking water in residential areas, providing a robust tool to monitor public health and the comfort of the inhabitants.

Keywords

Potable water Statistical analysis Water quality Cloud computing Microcontroller Real-time monitoring

How to Cite

Salinas Buestan, N. R., Briones Yepez, N. R., Quiroz Nieves, S. I., Peña Banegas, D. P., & Ortiz Gonzalez, Y. M. (2024). Characterization and Analysis of Water Quality in Urban Environments through the Implementation of an Embedded System with IoT Technology. Revista Tecnológica - ESPOL, 36(E1), 98-112. https://doi.org/10.37815/rte.v36nE1.1194
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References

Acosta, S., Laines, B., & Piña, G. (16 de 04 de 2014). Repositiorio Academico UPC. Obtenido de https://repositorioacademico.upc.edu.pe/bitstream/handle/10757/316022/ma148_manual_2014_01.pdf?sequence=1&isAllowed=y

Arquero Gallego, J. (2022). Obtenido de https://oa.upm.es/71917/3/TFG_Juan_Arquero_Gallego.pdf

Candia, R., & Caiozzi, G. (17 de 09 de 2005). Revista médica de Chile. Obtenido de https://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0034-98872005000900017

Carriazo, Y. (1 de 09 de 2021). Obtenido de https://repository.unab.edu.co/handle/20.500.12749/15481

Daquilema Serrano, Á. (21 de 08 de 2020). Espol. Obtenido de https://www.dspace.espol.edu.ec/handle/123456789/56408

Faraldo, P., & Pateiro, B. (16 de 06 de 2013). USC. Obtenido de http://eio.usc.es/eipc1/BASE/BASEMASTER/FORMULARIOS-PHP-DPTO/MATERIALES/Mat_G2021103104_EstadisticaTema1.pdf

FasterCapital. (5 de 04 de 2024). FasterCapital. Obtenido de https://fastercapital.com/es/contenido/Desviacion-estandar--como-calcularla-e-interpretarla.html

Francisco, J. (30 de 04 de 2020). Obtenido de https://cifpn1.com/electronica/?p=6402

GAD Quevedo. (16 de 06 de 2020). Gobierno autonomo decentralizado municipal de Quevedo. Obtenido de https://quevedo.gob.ec/plan-desarrollo-y-ordenamiento-territorial-2019-2023/

Guevara, L., & Suntaxi, H. (18 de 10 de 2020). ESPE. Obtenido de http://repositorio.espe.edu.ec/bitstream/21000/23414/1/T-ESPE-044191.pdf

hiru. (25 de 6 de 2024). Obtenido de https://www.hiru.eus/es/matematicas/medidas-de-tendencia-central

Jan, F., Min-Allah, N., & Dü¸stegör, M.-A. (14 de 01 de 2023). Obtenido de MPDI: https://www.mdpi.com/2073-4441/13/13/1729

Medina, F. (26 de 04 de 2024). Obtenido de https://portalacademico.cch.unam.mx/materiales/prof/matdidac/sitpro/exp/bio/guia-biologia3/Anexo_5.pdf

Menéndez, P. (21 de 06 de 2023). Ucrea. Obtenido de https://repositorio.unican.es/xmlui/handle/10902/30240

Molina, M. (10 de 06 de 2021). Obtenido de https://evidenciasenpediatria.es/files/41-13993-RUTA/25_Fund_Correlacion_v2.pdf

Muñoz, L. (2013). Ecorfan.

OMS. (24 de 04 de 2018). Obtenido de https://www.who.int/es/publications/i/item/9789241549950

OPS. (28 de 07 de 2008). Obtenido de https://www.paho.org/es/documentos/guia-para-vigilancia-control-calidad-agua-situaciones-emergencia-desastre

Roque, A. S. (16 de 08 de 2020). uaem. Obtenido de http://riaa.uaem.mx/xmlui/bitstream/handle/20.500.12055/1611/SERAQL08T.pdf?sequence=1

Semarnat. (14 de 02 de 2023). Semarnat. Obtenido de https://apps1.semarnat.gob.mx:8443/dgeia/informe18/index.html

Silvestre, S., Salazar, J., & Marzo, J. (01 de 2019). UPCommons. Obtenido de https://upcommons.upc.edu/handle/2117/190969

Teja, P. (8 de 9 de 2022). Obtenido de https://www.mr-beam.org/es/blogs/news/que-es-un-codigo-g