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<title>Análise e Desenvolvimento de Sistemas</title>
<link>https://repositorio.ifpe.edu.br/xmlui/handle/123456789/1274</link>
<description>Trabalho de Conclusão de Curso - TCC</description>
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<rdf:li rdf:resource="https://repositorio.ifpe.edu.br/xmlui/handle/123456789/2307"/>
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<dc:date>2026-09-13T14:02:27Z</dc:date>
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<item rdf:about="https://repositorio.ifpe.edu.br/xmlui/handle/123456789/2310">
<title>Sauter University: desenvolvimento de um software educacional para aprendizado contínuo em tecnologia e computação em nuvem</title>
<link>https://repositorio.ifpe.edu.br/xmlui/handle/123456789/2310</link>
<description>Sauter University: desenvolvimento de um software educacional para aprendizado contínuo em tecnologia e computação em nuvem
This paper presents the development of Sauter University, an innovative educational platform for cloud computing certification training, with emphasis on Google Cloud Platform. The platform was designed to address the lack of specialized tools in the Brazilian market, offering adaptive mock exams, intelligent question generation, personalized learning paths, and a gamified scoring system. Developed with a microservices architecture using Spring Boot (Java) for the backend and Next.js (TypeScript) for the frontend, the solution also integrates Google Cloud services such as Cloud Run, Firestore and MongoDB. The results obtained in the first months of operation demonstrated the effectiveness of the approach, with seven certifications achieved by users. The project also stands out for its social impact, being used in professional training programs for underprivileged youth in Rio de Janeiro. The methodology combined Domain-Driven Design with agile practices, resulting in a scalable platform that has already a lot of users internally.
</description>
<dc:date>2026-03-17T00:00:00Z</dc:date>
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<item rdf:about="https://repositorio.ifpe.edu.br/xmlui/handle/123456789/2307">
<title>Automação do manejo térmico em suinocultura: uma abordagem baseada em sistemas embarcados e web</title>
<link>https://repositorio.ifpe.edu.br/xmlui/handle/123456789/2307</link>
<description>Automação do manejo térmico em suinocultura: uma abordagem baseada em sistemas embarcados e web
Swine production plays a fundamental role in the Brazilian economy, being responsible for employment and income generation. In Pernambuco, the scenario is no different: although the state has a diversified economy and the sector is decentralized across its regions, various initiatives seek to boost this production, which is predominantly composed of small and medium-sized producers. The production cycle requires strict control over animal welfare to ensure the health and high performance of the herd. In this context, thermal comfort stands out as a critical factor for the proper development of the swine. Aiming to automate the climate control of the facilities, the present work proposes the development of a thermal management system that integrates an embedded module with a web platform. The hardware operates locally at the farm, using temperature sensors to autonomously activate or deactivate actuators. Simultaneously, the web application functions as a control panel, where the producer can monitor climate metrics, verify the physical status of the equipment, and manage operations remotely. This work aims to demonstrate the feasibility of applying Internet of Things (IoT) technologies in small-scale agribusinesses, promoting efficient management, reducing production losses, and increasing operational efficiency in the field.
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<dc:date>2026-07-16T00:00:00Z</dc:date>
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<title>Arquitetura escalável para sistemas de delivery: uma abordagem baseada em eventos, cache distribuído e indexação geoespacial</title>
<link>https://repositorio.ifpe.edu.br/xmlui/handle/123456789/2274</link>
<description>Arquitetura escalável para sistemas de delivery: uma abordagem baseada em eventos, cache distribuído e indexação geoespacial
This work presents the development of a backend platform for a food delivery marketplace system, designed to efficiently manage the entire order lifecycle, from product selection to delivery and service evaluation. The proposed solution adopts a modular monolith architecture with strong adherence to Hexagonal Architecture principles, promoting a clear separation between business logic and external dependencies. Furthermore, the system incorporates concepts of Event-Driven Architecture, enabling asynchronous processing of critical tasks through distributed messaging, which enhances scalability and resilience. To support performance, in-memory caching technologies and state management strategies are employed, reducing latency in critical operations. Additionally, the system leverages geospatial indexing based on H3 to optimize the delivery dispatch process, enabling efficient proximity queries. The adopted methodology is based on the definition of functional and non-functional requirements, domain-driven design modeling, and incremental implementation using containerization to ensure environment consistency. The results indicate that the solution is capable of handling high-demand scenarios, providing adequate performance, architectural organization, and ease of evolution. It is concluded that the combination of clean architecture, asynchronous processing, and geolocation techniques constitutes an effective approach for building modern delivery systems, serving as a solid foundation for both real-world applications and academic studies.
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<dc:date>2026-06-18T00:00:00Z</dc:date>
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<item rdf:about="https://repositorio.ifpe.edu.br/xmlui/handle/123456789/2006">
<title>Implementação e avaliação da disponibilidade de um ambiente multi-cluster baseado em kubernetes K3S</title>
<link>https://repositorio.ifpe.edu.br/xmlui/handle/123456789/2006</link>
<description>Implementação e avaliação da disponibilidade de um ambiente multi-cluster baseado em kubernetes K3S
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<dc:date>2026-02-06T00:00:00Z</dc:date>
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