Departamento de Ensino Superior

URI permanente desta comunidadehttps://ri.ifam.edu.br/handle/4321/956

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Resultados da Pesquisa

Agora exibindo 1 - 6 de 6
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    Trabalho de Conclusão de Curso
    Automatização do processo de desidratação de sementes de guaraná em Maués: uma solução para melhorar o desempenho e a qualidade na indústria alimentícia
    (2025-05-05) Freitas, William Lessa; Cordeiro, Celso Souza; http://lattes.cnpq.br/4969144304480235; Ribeiro, Ewerton Andrey Godinho; http://lattes.cnpq.br/0187470129136467; Lima, Jonatas Micael Vieira de; http://lattes.cnpq.br/4866950717399057
    This work addresses the proposal for automating the guarana seed dehydration machine at Fazenda Maués, a branch of Cibea Manaus. The farm, recognized for producing high-quality guarana since 2009, incorporated a new machine into its production system in 2022, modernizing the dehydration process, which is essential for ensuring the quality and viability of the seeds. The automation proposal includes a closed-loop control system, in which the temperature and uniformity of the dehydration would be continuously monitored by sensors. This data would allow for real-time automatic adjustments, ensuring that the temperature remains within the desired limits, which is crucial for the quality of the final product. The PID (Proportional-IntegralDerivative) controller would be the central component of this system, regulating the fan speed and ensuring uniform dehydration. The adoption of this technology is expected to bring significant improvements in terms of efficiency, precision in process control, and sustainability, reducing energy waste and operation time. Closed-loop automation has the potential to raise control and quality standards in the dehydration of guarana seeds, representing a significant advancement in the local agribusiness. Therefore, this work aims to contribute to the understanding of the proposed innovations in guarana industry automation, highlighting its importance for modernization and quality in production.
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    Trabalho de Conclusão de Curso
    Sistema Integrado de detecção de EPIS - SIDE
    (2025-04-11) Prestes, Emyli Beatriz Braga; Martiniano, Alexandre Lopes; http://lattes.cnpq.br/2232239320901259; Ribeiro, João Bernardo Aranha; http://lattes.cnpq.br/9027441032059817; Velozo, Hugo Alves; http://lattes.cnpq.br/8351107136518878
    This work presents the development of a computer vision system aimed at the automatic detection of Personal Protective Equipment (PPE) in workplace environments. The proposal seeks to integrate artificial intelligence technology with occupational safety, contributing to accident prevention and compliance with regulatory standards. The system uses the YOLOv8 model, a real-time object detection neural network trained to identify the main PPE items: helmet, safety glasses, face mask, and reflective vest. The dataset annotation and preparation were carried out using the Roboflow platform, which also facilitated the resizing, organization, and diversification of the images. For image capture, a camera connected to a Raspberry Pi was used, sending the data to a graphical interface developed in Python using the Streamlit framework. This interface allows real-time visualization of the detected equipment, making analysis easier for the user. The system was designed to be easy to implement and operate, offering a low-cost solution with potential application in various industrial sectors. Tests showed promising results regarding detection accuracy, even under different lighting conditions. The research highlights the potential of using computer vision and IoT to promote safer and more intelligently monitored workplaces. The combination of accessible hardware, intuitive software, and deep learning models proved effective in building systems that support occupational safety.
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    Trabalho de Conclusão de Curso
    Sistema automatizado para cultivo de plantas baseado internet das coisas
    (2023-09-01) Palheto Neto, Pedro Ivan Das Graças; Palheta, Pedro Ivan Das Graças; http://lattes.cnpq.br/1581213571653545; Neves, Cleonor Crescencio das; http://lattes.cnpq.br/2176855362313017; Palheta Neto, Pedro Ivan Das Graças; http://lattes.cnpq.br/1581213571653545; Neves, Cleonor Crescêncio das; http://lattes.cnpq.br/2176855362313017; Queiroz Neto, José Pínheiro de; http://lattes.cnpq.br/8055796489225138; Martiniano, Alexandre Lopes; http://lattes.cnpq.br/2232239320901259
    This work consists of developing an indoor greenhouse for growing plants through an automated system using the principle of the internet of things. Using the control of temperature variables, air and soil humidity and luminosity, using sensing connected to the ESP32 platform. The user is given control and access to the status of the greenhouse, providing an environment for quality cultivation and easy construction.
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    Trabalho de Conclusão de Curso
    Desenvolvimento de um sistema para monitoramento e controle do consumo de energia elétrica em ambiente residencial
    (2022-10-11) Máximo, Hugo de Oliveira; Ramos, Juan Gabriel de Albuquerque; Ramos, Juan Gabriel de Albuquerque; Carvalho, Carlos Ronaldo Cardoso de; Silva, Gilberto Andrade
    This work consists of the study of an automated control and monitoring system to ensure the monitoring of electrical quantities. The system uses information from current and voltage sensors. The system interface allows the visualization of consumption data. After analyzes carried out using the prototype, satisfactory results were found for monitoring electrical quantities.
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    Trabalho de Conclusão de Curso
    Monitoramento das instalações de ar condicionado no interior das salas de aula do IFAM
    (2021-07-16) Penha, Elton Silveira da; Frota, Vitor Bremgartner da; Frota, Vitor Bremgartner da; Alves, Fernanda da Silva; Silva, Nivaldo Rodrigues e
    Monitoring air conditioning equipment is an important factor in several types of institutions, since it is necessary to acclimatize spaces with little noise and without risk of contamination. Based on this context, this work aimed to analyze the air conditioning installations inside the IFAM classrooms, then proposing a maintenance plan. The basic purpose of this monitoring is to monitor the performance of the devices through measurements of temperature, humidity and noise and identify those devices that present failures or difficulties in operation, thus allowing a more effective maintenance intervention. Based on the data collected, it can be identified that the analyzed air conditioners have an inadequate operation, since the room temperatures are above the determined in the device. In addition, the noise level is above that specified by NBR 10152, affecting not only the hearing of students and teachers, but also harming the class. Humidity values are also inadequate, indicating that the devices need a maintenance plan. Therefore, three lines of maintenance were proposed to prevent these problems. These maintenance are monthly, semi-annual and annual, considering the use of the campus maintenance team.
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    Trabalho de Conclusão de Curso
    Correção de fator de potência de motores utilizando banco de capacitores com monitoramento via Bluetooth
    (2020-02-27) Filgueiras, César Francisco Filizola; Lima, José de Jesus Botelho de; Lima, José de Jesus Botelho de; Rodrigues, Marlos André Silva; Reis, Vanderson de Lima
    El mercado energético está constantemente necesitando demanda de energía, actualmente con los recursos naturales agotando la necesidad de optimización y rendimiento se ha convertido en un diferencial para las industrias que depende directamente de la energía eléctrica para sus procesos. El principal objetivo del proyecto consiste en el enfoque de la tecnología de corrección dinámica del factor de potencia basado en accionamientos de condensadores por medio de un monitoreo y control capaz de conmutar bancos capacitivos utilizando un microcontrolador. Para ello, el prototipo debe informar a los usuarios a través de un smartphone parámetros eléctricos como señales de tensión, corriente de fase y factor de potencia. En la realización de ese trabajo se utilizó el microcontrolador dsPIC30F3012. Toda programación fue desarrollada en ambiente MikroC.