Implementación De Una Cabina Sanitizante Con Tecnología IoMT Para Medir Temperatura, O2sat E IMC, En La UEIB. Oswaldo Guayasamín (Colta-Chimborazo).

This research work uses an electronic and technological study for the design, construction, automation, and implementation of an intelligent sanitizing cabin, based on the architecture (four layers) of the Internet of Medical Things (IoMT). The Sanitizing Booth with IoMT technology has a Facial Reco...

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Detalles Bibliográficos
Autor Principal: Romero Morán, Paúl Ramiro (author)
Outros autores: Yautibug Apugllón, Daniel Patricio (author)
Formato: bachelorThesis
Idioma:spa
Publicado: 2022
Subjects:
Acceso en liña:http://dspace.unach.edu.ec/handle/51000/10066
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Summary:This research work uses an electronic and technological study for the design, construction, automation, and implementation of an intelligent sanitizing cabin, based on the architecture (four layers) of the Internet of Medical Things (IoMT). The Sanitizing Booth with IoMT technology has a Facial Recognition system that automatically authenticates and registers the user. It also permits real-time monitoring and collecting information to create medical records of body temperature (TC), oxygen saturation level in the blood (O2Sat), and body mass indexes (BMI) parameters such as weight and height of the students, teachers, and administrative staff of the UEIB. Oswaldo Guayasamín (Colta-Chimborazo). In addition, the intelligent sanitizing cabin has a nebulization system that permits disinfecting people's exposed body surfaces, thus achieving a radical reduction in possible infections by the SARSCoV-2 virus and thus avoiding the spread of this illness. The project was carried out in collaboration with the EcoSur Foundation as part of the "Health as a social product, oriented towards good living" plan. Within the first chapter, the Problem is raised where the General and Specific Objectives are established. In the second chapter, there is the State of the Art with the pertinent information about technological instruments, communication protocols, IoMT technology architecture, facial recognition, quality control, and programming Software, these being the necessary tools in the development phase design. In the third chapter, the Research Methodology is detailed, where each step fulfills the proposed Objectives described before. In the fourth chapter, the results obtained are analyzed and interpreted, which, through statistical analysis, evaluate the behavior of the data: TC, O2Sat, and BMI of the users. A comparative analysis is also carried out between the data obtained by the biomedical sensors implemented and the standard measurement instruments. In addition, an exploratory analysis of tolerances is carried out with an Introduction to Statistical Quality Control and the Six Sigma metric. This way, the design, construction, and correct performance of the Intelligent Sanitizing Booth are guaranteed. Finally, in the fifth chapter are the conclusions and recommendations.