WATER QUALITY MONITORING KIT

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Autor principal: Global Academy of Technology
Formato: Recurso digital
Lenguaje:inglés
Publicado: Zenodo 2025
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author Global Academy of Technology
author_facet Global Academy of Technology
contents <p>Incorporating the Internet of Things (IoT) in environmental monitoring has transformed the <br>administration and monitoring of water resources. Distributed network is used to collect the <br>Real-time and continuous data from sensors based on IoT systems which is used for better <br>decision-making towards the use of sustainable water. This paper performs a systematic review <br>of current publications on water quality monitoring systems based on IoT. To identify <br>technological trends, design protocols, and implementation challenges thirteen research works <br>are analysed. The summary outlines the evolution of sensor technologies, IoT architectures, <br>integrated systems and communication networks that enable reliable and efficient water <br>monitoring. Despite unprecedented advances, there remain issues that remain constant in <br>calibration, data consistency, and long-field deployment performance. Further studies must <br>concentrate on scalability, interoperability, and sustainably deployable practices to enable IoT<br>based monitoring systems to be deployed in a range of environmental contexts. <br>Keywords Internet of Things (IoT), water quality monitoring, communication technologies, <br>environmental monitoring, embedded systems, sensors. </p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17446659
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle WATER QUALITY MONITORING KIT
Global Academy of Technology
"(MeSH) (4-(m-Chlorophenylcarbamoyloxy)-2-butynyl)trimethylammonium Chloride"
<p>Incorporating the Internet of Things (IoT) in environmental monitoring has transformed the <br>administration and monitoring of water resources. Distributed network is used to collect the <br>Real-time and continuous data from sensors based on IoT systems which is used for better <br>decision-making towards the use of sustainable water. This paper performs a systematic review <br>of current publications on water quality monitoring systems based on IoT. To identify <br>technological trends, design protocols, and implementation challenges thirteen research works <br>are analysed. The summary outlines the evolution of sensor technologies, IoT architectures, <br>integrated systems and communication networks that enable reliable and efficient water <br>monitoring. Despite unprecedented advances, there remain issues that remain constant in <br>calibration, data consistency, and long-field deployment performance. Further studies must <br>concentrate on scalability, interoperability, and sustainably deployable practices to enable IoT<br>based monitoring systems to be deployed in a range of environmental contexts. <br>Keywords Internet of Things (IoT), water quality monitoring, communication technologies, <br>environmental monitoring, embedded systems, sensors. </p>
title WATER QUALITY MONITORING KIT
topic "(MeSH) (4-(m-Chlorophenylcarbamoyloxy)-2-butynyl)trimethylammonium Chloride"
url https://doi.org/10.5281/zenodo.17446659