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Browsing by Author "ALMEIDA, Marcelo Ciacco de"

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    AUTOMAÇÃO ROBÓTICA: SOLUÇÕES SUSTENTÁVEIS E INCLUSIVAS: UNIFEOB
    (Centro Universitário de Ensino Octávio Bastos, 2025-02-12) SOUZA, Carlos Alberto Collozzo de; ALMEIDA, Marcelo Ciacco de; OLIVEIRA, Rodrigo Marudi de; SANTOS, Mariângela Martimbianco; GONÇALVES, Carlos Eduardo Couto; TARDELLI, Diego Furlan; RODRIGUES, Fábio Mota; INÁCIO, Letícia Vieira; FERNANDES, Pedro Rufino; MOREIRA, Vinicius Altero
    In the Robotics module of the Computer Science course, the proposal for the Extension is sustainable and inclusive solutions through the use of robotic automation. In this project, we use the sustainable goal (SDG) – from the UN – of Industry, innovation and infrastructure (SDG 9). The objective is to create a “lumberjack” robot, responsible for collecting wood that ideally in addition to collection, it will separate the material in designated spaces, so autonomous, reducing the impact of harmful practices and increasing the efficiency of this type of transport. The designed robot is on a reduced scale of what would be used to actually perform this task, thus being a prototype for academic purposes.The project will use diverse knowledge from the study units covered in module. They are: Robotics, under the responsibility of Prof. Marcelo Ciacco de Almeida, introducing us to robotics knowledge for assembling the robot, identifying movements, classification and possible calculations; Machine Learning, under the responsibility of Prof. Rodrigo Marudi de Oliveira, introducing us to the development of learning machine that controls the robot, and bridging the Differential and Integral Calculus unit, of responsibility of the Prof. Carlos Alberto Collozzo de Souza; and Linear Algebra and Geometry Analytics, also the responsibility of Prof. Carlos Alberto Collozzo de Souza, who introduces algebraic notions related to the general movement of the robot, such as drivability and the movement of the robotic arm. Through this project, we developed an autonomous machine prototype, equipped with computer vision and robotic arms, capable of identifying, locating and collecting different types of raw materials in complex industrial environments. This innovative solution promises significantly increase the efficiency of production processes, reduce operating costs and ensure greater safety for workers by automating repetitive and potentially dangerous
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    AUTOMAÇÃO ROBÓTICA: SOLUÇÕES SUSTENTÁVEIS E INCLUSIVAS: BOMBERBÔ
    (Centro Universitário de Ensino Octávio Bastos, 2025-02-11) SOUZA, Carlos Alberto Collozzo de; ALMEIDA, Marcelo Ciacco de; OLIVEIRA, Rodrigo Marudi de; SANTOS, Mariângela Martimbianco; DALOCA, Diogo; FURLANETTO, Fernando; NEUBERGER, Geovana; HENRIQUE, Gustavo; ZANELLI, Kayque; BARREIRO, Lucas
    In recent years, the intensification of forest fires has had consequences devastating effects on the environment and society, generating irreversible destruction in ecosystems, threatening biodiversity and putting the health and safety of nearby communities. The release of polluting gases during these fires contributes to the worsening of global warming, creating a destructive cycle that affects the planet as a whole. Faced with this worrying scenario, there is a need to seek solutions practical and sustainable ways to monitor and combat forest fires, in order to preserve natural resources and protect the environmental balance. This scenario raises a reflection on the role that technology can play in safeguarding the environment and mitigating the effects of climate change. As community, we are increasingly aware of the importance of creating solutions that not only solve urgent issues, but which are also aligned with a perspective of more sustainable and inclusive future. Questions such as "How can we employ technology to safeguard the environment?" and "How can innovations help us face global issues in an ethical and efficient manner?" become crucial. This Integrated Project has aims to develop an autonomous robot, specifically designed to combat forest fires.The robot was designed to function autonomously, equipped with technologies that make it possible to identify fire outbreaks, monitor the environment and intervene directly in fire suppression. Your proposal is in line with the objectives of UN Sustainable Development (SDG) as the UN Development Goal Sustainable 13 (Action against Global Climate Change) and the Sustainable Development Goal Sustainable Development 15 (Life on Earth), which emphasize the importance of environmental preservation and effective measures to reduce environmental impacts. Like this, the project aims not only to develop an innovative and effective solution to the fight against fire, but also reinforce the commitment to forest conservation and environmental preservation. In short, more than a simple technological innovation, this project seeks promote a new way of thinking about the relationship between technology and the environment. To the integrate advanced tools into a practical and accessible application, the robot represents a significant contribution to environmental preservation, encouraging awareness greater awareness of collective responsibility in protecting natural ecosystems. Therefore, the creation of this robot represents a significant advance not only in the area of ​​automation, but also in promoting an environmentally conscious perspective, dedicated to the preservation of forests and the preservation of vital resources for future generations.
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    AUTOMAÇÃO ROBÓTICA: SOLUÇÕES SUSTENTÁVEIS E INCLUSIVAS: GRUPO MALPA
    (Centro Universitário de Ensino Octávio Bastos, 2025-02-11) SOUZA, Carlos Alberto Collozzo de; ALMEIDA, Marcelo Ciacco de; OLIVEIRA, Rodrigo Marudi de; SANTOS, Mariângela Martimbianco; SILVA, Bruno Cardoso; GASPAR, Igor Gabriel Moraes; MELO, Igor Guilherme dos Reis; SANTOS, Luciano Aimon Ottoni; PINTO, Matheus Souza; OBLONCZYK, Vinycius Gabriel
    The project “Robotic Automation: Sustainable and Inclusive Solutions” has The objective is to develop an autonomous robot that contributes to the UN Sustainable Development (SDG). Using a Raspberry Pi 4 as base platform, the robot will be equipped with a hover system for mobility efficient and a robotic arm for manipulating objects. Integrating techniques machine learning and computer vision, it will be able to recognize different types terrain and operate autonomously in varied environments. The main function of the robot will be to identify and collect small waste, promoting the cleaning of urban and natural spaces, contributing to the environmental sustainability (SDG 11). The project also had the support of company 3D-Aimon, which sponsored the manufacturing of essential parts for the robot by means of 3D printing, ensuring light, resistant and personalized components for the solution. This partnership allowed the application of knowledge in Robotics, Machine Learning, Linear Algebra, Analytical Geometry and Differential Calculus, aligning technological innovation with practical solutions to global challenges, such as care for the environment and the promotion of more sustainable cities.
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    AUTOMAÇÃO ROBÓTICA: SOLUÇÕES SUSTENTÁVEIS E INCLUSIVAS: TECNOAGRO
    (Centro Universitário de Ensino Octávio Bastos, 2025-02-12) SOUZA, Carlos Alberto Collozzo de; ALMEIDA, Marcelo Ciacco de; OLIVEIRA, Rodrigo Marudi de; SANTOS, Mariângela Martimbianco; CUNHA, Caio Grilo da; MORONI, Gian Carlos de Freitas; CALIARI, Haryel Araújo de Oliveira; KANEKIYO, Jackeline Ayumi
    The object of this project consists of the development of a robot assistant sustainable agriculture, an innovative autonomous system that aims to optimize agricultural practices through advanced technologies. Aligned with the Sustainable Development Goal (SDG), a worldwide appeal to make planet Earth prosperous (UN, 2015). The proposal meets the following SDGs: Zero Hunger and Sustainable Agriculture (SDG 2), Consumption and Responsible Production (SDG 12) and Land Life (SDG 15). The robot will be able to identify and remove diseased plants with high precision, reducing the need for manual interventions and the use of chemical inputs, promoting thus a more sustainable and efficient approach to plantation management.Automation in agriculture has benefited from learning technologies machine and robotics to improve processes and optimize plant management. An example is the development of robots with advanced capabilities to identify and remove plants sick. This system follows a two-step approach: identification of diseased plants and precise removal of these plants. In the first step, the system is designed to identify diseases in plants specific, using machine learning. Convolutional neural networks (CNNs) are especially efficient for this purpose due to their ability to learn and recognize complex visual patterns (LeCun et al., 2015). These networks have been widely used in agriculture for tasks such as detecting diseases in crops, in which can analyze visual characteristics of diseases, such as spots and changes in leaf coloration (Ferentinos, 2018). The robot's cameras capture images in time real life of plants, which are then analyzed by CNNs to identify signs of diseases with precision. The training database used contains images of healthy and sick, which allows the system to distinguish with high accuracy between healthy plants and plants with signs of disease such as yellowing leaves, spots and wilting (Mohanty et al., 2016).
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    AUTOMAÇÃO ROBÓTICA: SOLUÇÕES SUSTENTÁVEIS E INCLUSIVAS: UNIFEOB
    (Centro Universitário de Ensino Octávio Bastos, 2025-02-12) SOUZA, Carlos Alberto Collozzo de; ALMEIDA, Marcelo Ciacco de; OLIVEIRA, Rodrigo Marudi de; SANTOS, Mariângela Martimbianco; VALIM, Arthur Tavares de Paula; FRANCO, Bruno Henrique do Prado; SILVA, João Vitor da; MUNIZ, Kamily de Oliveira; GARINO, Leonardo Santello; PEREIRA, Luiz Felipe dos Santos; FERREIRA, Marcos Valverde de Mira
    With the world increasingly focused on sustainable practices, the search for new technologies that contribute to the preservation of the environment have become a global priority. In this context, the group decided to focus on an innovative solution for waste management, one of the great challenges of modern society. The central idea was develop a robot that not only facilitates the garbage collection process, but also directly contribute to the creation of a cleaner and more sustainable environment. This project proposes the creation of an autonomous robot, capable of moving and collecting garbage automatically. The technology developed allows the robot to identify, collect and store waste, providing a practical solution for urban and industrial. In addition to optimizing waste collection, this innovation contributes to the preservation environment, helping to reduce pollution and promoting more efficient management of solid waste. As the FIA ​​website states, (2024) “By adopting sustainable practices, we design a more prosperous future, with biodiversity, respect for the environment and wealth shared. [...]”.The development of this robot was possible thanks to the application of a series of knowledge acquired throughout this course, especially in the Robotics disciplines, Machine Learning, Linear Algebra and Analytical Geometry and Differential and Integral Calculus. Each of these areas provided a solid foundation for project advancement, from control from autonomous movements to the creation of code for object detection. That interdisciplinary knowledge was essential for the success of the proposed solution
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    AUTOMAÇÃO ROBÓTICA: SOLUÇÕES SUSTENTÁVEIS E INCLUSIVAS: UNIFEOB
    (Centro Universitário de Ensino Octávio Bastos, 2025-02-11) SOUZA, Carlos Alberto Collozzo de; ALMEIDA, Marcelo Ciacco de; OLIVEIRA, Rodrigo Marudi de; SANTOS, Mariângela Martimbianco; SILVA, João Vitor de Lima Pacheco da; SILVA, Renan Alves da; SOARES, Vitor Antonio Rotha; OLIVEIRA, Willian Machado de
    Our company focuses on SDG 8, which seeks to promote economic growth sustained, inclusive and sustainable, with full and productive employment, in addition to work decent for everyone. In this context, the robotic prototype to be developed must act as a facilitator in an area that directly contributes to the achievement of these objectives, promoting innovative solutions that contribute to the creation of safer working environments inclusive and sustainable. The proposal, therefore, aims not only at technological development, but also at commitment to social and environmental responsibility, ensuring that robotic automation contribute to building a fairer and more sustainable future. The development of the robot will be oriented to directly meet the needs established by SDG 8, more specifically with regard to promoting a inclusive and sustainable economic growth. From this, the robot can be designed to act in several areas, from the automation of repetitive and dangerous tasks, which can reduce risk of work accidents, to support in activities that promote the inclusion of people with disabilities in the labor market.This project consists of the development of a mechanical arm specialized in carry out soldering at fixed points on circuit boards. The main structure of the project involves a movement base in a Cartesian plane, allowing the arm to move in a need for different soldering points. Welding will be carried out with the aid of a welding system. local tin supply, ensuring process efficiency and continuity. The ultimate objective is to create an efficient system capable of performing welding with high precision on circuit boards with an increasing level of autonomy due to the integration of machine learning techniques
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    Computação em Nuvem: Os impactos da poluição e da contaminação química na saúde da população
    (Fundação de Ensino Octávio Bastos, 2023-11-30) ESTETER, Guilherme Henrique Leoni; GLÓRIA JÙNIOR, Mauro; ALMEIDA, Marcelo Ciacco de; VALLIM, Max Streicher; OLIVEIRA, Rodrigo Marudi de; SANTOS, Mariângela Martimbianco
    The project seeks to align with the UN objective of reducing deaths and detailed information on mixed substances, instructions for safe use, are cohesive with the educational and preventive mission. The focus on secure storage, knowledge sharing and regulatory compliance demonstrates the drive to mitigate risks and promote awareness.
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    Desenvolvimento de simuladores econômicos para leigos: UNIFEOB Preciso
    (Fundação de Ensino Octávio Bastos, 2023-11-30) VALLIM, Arthur Tavares de Paula; TEIO, Christian Mello; SORG, Geovana Neuberger; SILVA, João Vitor da; GARINO, Leonardo Santello; LOPES, Sophia Vilela; GONÇALVES, Thainari Gabriele; GLÒRIA JÙNIOR, Mauro; ALMEIDA, Marcelo Ciacco de; VALLIM, Max Streicher; OLIVEIRA, Rodrigo Marudi de; SANTOS, Mariângela Martimbianco
    The development of this project took place based on the premise of helping and collaborating towards basic knowledge in finance and primary calculations on interest and investments. All thought is to primarily assist beginners who need support to start their financial life.
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    IOT Data Streamer : Ágora
    (Fundação de Ensino Octávio Bastos, 2023-11-30) SANTOS, Carlos Gabriel dos; SILVA, Fellipe Kozerski; ABREU, Leticia Ramiro; NUNES, Lucas Guimarães Castro; FRIEDRICH, Matheus Farnetani; MARCONDES, Renata Elizabeth de Alencar; ANDRADE, Nivaldo; ANDRADE, Nivaldo; ALMEIDA, Marcelo Ciacco de; VALLIM, Max Streicher; SANTOS, Mariângela Martimbianco
    For a long time now, we have established as a society that “normal” is not needing to be worried about our safety, and that by default all places are safe, but unfortunately this is no longer such a solid reality. Making use of the basic requirements for the construction of the project, our product is a low-cost modular security and identification system, designed for quick installation. Using RFID (Radio Frequency Identification) technology, we map the control real-time access in a simple way, with just one touch.
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    IOT Data Streamer : AUT4US
    (Fundação de Ensino Octávio Bastos, 2023-11-30) RIBEIRO, Camily; DOMINGOS, Gabrielly Simão; GENARI, Lucas Bernardes; ANDRADE, Hugo Villela; MARCONDES, Renata Elizabeth de Alencar; ANDRADE, Nivaldo; VALLIM, Max Streicher; ALMEIDA, Marcelo Ciacco de; SANTOS, Mariângela Martimbianco
    The primary objective of IoT Data Streamer is to provide a robust and intuitive desktop application, dedicated to managing and analyzing data from the company's mobile application. This application will be responsible for simulating the import of data in TXT and CSV formats, processing and storing them in an organized manner in a centralized database.
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    IOT Data Streamer : DEVSE7E
    (Fundação de Ensino Octávio Bastos, 2023-11-30) ALEIXO, Bruno Dotta; BARBOSA FILHO, Fabio Luiz; MORAIS, Felipe Augusto Paulino de; SILVA, Fernando Candido da; SOZO, João Gabriel O. Marcondes de; FREITAS, Kayky Rodrigo Graciano de; MARCONDES, Renata Elizabeth de Alencar; ANDRADE, Nivaldo; ALMEIDA, Marcelo Ciacco de; VALLIM, Max Streicher; SANTOS, Mariângela Martimbianco
    This project aims to use the IOT device developed by the same group of students from the first semester of 2023, and use it to interact with a database: reading, inserting, deleting and modifying data. The DEV-SE7E IOT device has the ability to interact with smartphones through an NFC sensor and insert data into the database, with the purpose of recording students' presence. It is worth noting that this data can be manipulated by a teacher, if necessary.
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    IOT Data Streamer : Fast Lane
    (Fundação de Ensino Octávio Bastos, 2023-11-30) TEIXEIRA, Rodrigo Espinosa; GIMENES, Felipe Fonseca; LEANDRINI, Enzo Dorigon; SILVA, Marcos Vinícius Carvalho da; MONTEIRO, Rafael Meireles Alves; MARCONDES, Renata Elizabeth de Alencar; ANDRADE, Nivaldo; ALMEIDA, Marcelo Ciacco de; VALLIM, Max Streicher; SANTOS, Mariângela Martimbianco
    With the advent of digital transformation, Information Technology (IT) infrastructure has become a fundamental pillar for the efficient functioning of organizations around the world. In this context, the stability and performance of servers become crucial to guarantee operational continuity and data security. Recognizing this importance, we present the innovative server monitoring project through the use of temperature and humidity sensors.
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    IOT Data Streamer : GATE5
    (Fundação de Ensino Octávio Bastos, 2023-11-30) PEREIRA, Betânia Amâncio; SANTOS, Pedro Scarpellini dos; SOUZA, Lavínia dal Bello e; RODRIGUEZ, Lucas B. S.; ALVES, Lucas Eduardo Cruz; TOBIAS, Maria Fernanda; MARCONDES, Renata Elizabeth de Alencar; ANDRADE, Nivaldo; ALMEIDA, Marcelo Ciacco de; VALLIM, Max Streicher; SANTOS, Mariângela Martimbianco
    Growing concern for the environment and the need to promote sustainable practices have driven the development of innovative solutions for efficient waste management. In this context, GATE5, a group dedicated to technology and sustainability, presents a project for a smart trash bin with an integrated application. This bin, which combines advanced sensors and connectivity, aims to optimize the waste collection process and promote awareness about proper waste management. The smart bin developed by the group is a technologically advanced solution that uses integrated sensors to monitor the bin's occupancy level in real time.
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    IOT Data Streamer : ILight
    (Fundação de Ensino Octávio Bastos, 2023-11-30) RODRIGUES, Guilherme Carvalho André; CRUZ, Gustavo Aurelio Barboza da; FERREIRA, João Pedro Rezende; FELICIO, Luis Gabriel Brito; TACONI, Matheus Gimenes; ZUIN, Vitor Guilherme Dantas; MARCONDES, Renata Elizabeth de Alencar; ANDRADE, Nivaldo; ALMEIDA, Marcelo Ciacco de; VALLIM, Max Streicher; SANTOS, Mariângela Martimbianco
    Home automation has become a growing trend in the interior design and construction sector. This technological revolution has provided greater comfort, energy efficiency and security in homes, making them more intelligent and adapted to the modern lifestyle. A fundamental element in this scenario is the automation of blinds, which play a crucial role in regulating natural light and privacy. Therefore, our objective is to help people with difficulties in their daily lives, in stores, companies, homes, etc. Knowing this problem, we carried out some research and came to the conclusion that it is an existing and common problem, not only in establishments, we are in the century of development and many people want to modernize even simple tasks such as opening and closing windows and curtains. With this in mind, we created an automatic shutter with a website and app, allowing you to control opening and closing times.
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    IOT Data Streamer : LOGDEV
    (Fundação de Ensino Octávio Bastos, 2023-11-30) LEITE, Derik dos Anjos Alves; ALVES, João Victor Salotti; PERINA, José Vinícius Martins; ALMEIDA, Otavio Henrique da Silva de; RODRIGUES, Victor de Souza; MARCONDES, Renata Elizabeth de Alencar; ANDRADE, Nivaldo; ANDRADE, Nivaldo; ALMEIDA, Marcelo Ciacco de; VALLIM, Max Streicher; SANTOS, Mariângela Martimbianco
    In 2020, the theme “Brazil wastes one day of school per week” was the subject of a survey carried out by BBC News Brasil. The World Bank evaluated 15,600 classrooms, more than half of them in Brazil (primary and high school classes in MG , PE and RJ), and calculated that, on average, only 64% of classroom time was spent delivering content, 20 percentage points below international standards. And this is due to poor time management within classrooms and, in particular, the time spent on oral calls.
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    IOT Data Streamer : Simple OIT
    (Fundação de Ensino Octávio Bastos, 2023-11-30) SANT ANNA, Caic; LOPES, Everton Henrique; KONDA, Fábio Koiti; GUIRRA, Gesiel dos Santos; FERREIRA, Lucas Pizol; RINKE, Vitor Alexandre Rocetti; MARCONDES, Renata Elizabeth de Alencar; ANDRADE, Nivaldo; ALMEIDA, Marcelo Ciacco de; VALLIM, Max Streicher; SANTOS, Mariângela Martimbianco
    EasyPet is a desktop application designed to simplify the management of valuable pet information. This software is specially developed to interact with smart collars equipped with sensors and store crucial data in a database. Allowing quick and easy access to detailed information about your pet's health, location and activities, all presented intuitively in a friendly user interface.
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    IOT Data Streamer : Solutech
    (Fundação de Ensino Octávio Bastos, 2023-11-30) DOMINGOS, João Lucas de Souza; BERNARDI, Gustavo da Silva; TEIXEIRA, José Eduardo; CARVALHO, Gabriel José de Lima; FIGUEIREDO, Thomas Nicholas Fernandes; MARCONDES, Renata Elizabeth de Alencar; ANDRADE, Nivaldo; ALMEIDA, Marcelo Ciacco de; VALLIM, Max Streicher; SANTOS, Mariângela Martimbianco
    During the first module (IoT), a low-cost and functional automatic feeder was developed. The product, called "PetFeeder", also aims to meet the needs of establishments focused on animal care, such as veterinary clinics and veterinary hospitals, offering flexibility and agility at animal meal times. In the project of the second module, a database will be built on a desktop created to manage the data of the prototype already developed by the team, which was an automatic feeder for animals. In practice, it will be a database to store records of the pet or pets, depending on how many the user has, so that they can record some things about the animal, such as name, size, kg, age among other information, in short it will be a registry, which will have the function of making it easier to organize data.
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    IOT Data Streamer : Star IOT
    (Fundação de Ensino Octávio Bastos, 2023-11-30) BORGES, André de Lima M.; COSTA, Carlos Miguel de Souza; SILVA, Leticia Stanguini da; RIBEIRO, Lucas Restani; MARIANO, Pedro Volpi; FERREIRA, Victor Daniel Lopes; MARCONDES, Renata Elizabeth de Alencar; ANDRADE, Nivaldo; ALMEIDA, Marcelo Ciacco de; VALLIM, Max Streicher; SANTOS, Mariângela Martimbianco
    STARIOT's main objective is to meet the needs of people who have guardianship of docile animals with the intention of helping people in the process of restoring animal health in veterinary clinics, using the PETFOOD product for a regulated and healthy diet for the animal.
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    IOT Data Streamer : Star IOT UNIFEOB
    (Fundação de Ensino Octávio Bastos, 2023-11-30) SOSSAI, Augusto B.; FERNANDES, Erick Simo de Souza; SALMASO, Nathan Heller Torati; PORTELA, Samuel Pontes; WOLAK, Waldrick; MARCONDES, Renata Elizabeth de Alencar; ANDRADE, Nivaldo; ALMEIDA, Marcelo Ciacco de; VALLIM, Max Streicher; SANTOS, Max Streicher; SANTOS, Mariângela Martimbianco
    The main objective of this project is to develop an efficient and affordable system that can be applied in different environments to improve security and surveillance. The union of Arduino, an open source electronics platform, with the OpenCV library, which provides advanced computer vision capabilities, allows the creation of an intelligent and personalized security system.
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    IOT Data Streamer : UNIFEOB
    (Fundação de Ensino Octávio Bastos, 2023-11-30) ARAÚJO, Igor Garcia Nunes de; CAMPOS, Igor José Ananias; CARVALHO, João Pedro Pizoli; MARQUES, João Vitor; LEITE, Luis Fernando Menezes Ferreira; TESSER, Vinicius Felipe; MARCONDES, Renata Elizabeth de Alencar; ANDRADE, Nivaldo; ALMEIDA, Marcelo Ciacco de; VALLIM, Max Streicher; SANTOS, Mariângela Martimbianco
    The main objective of our API is to offer agile and efficient control over environmental data, directing relevant information to registered users. Our API aims to optimize environmental data management, contributing to informed decision-making and promoting sustainable practices.
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