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Abstract(s)
Impulsionados por novas tecnologias digitais, o desenvolvimento em sistemas de manufatura industrial estĆ” transformando os mĆ©todos tradicionais de operação adotados pelas empresas, otimizando os processos produtivos e a capacidade de inovação. A implementação destas tecnologias permitiu a digitalização de ativos industriais, possibilitando o monitoramento em tempo real, a anĆ”lise preditiva e a tomada de decisƵes mais rĆ”pidas quando comparadas Ć s tecnologias anteriores. Assim, emergindo na IndĆŗstria 4.0, o Asset Administration Shell aparece como uma forma de representação digital de um ativo, informando suas caracterĆsticas tĆ©cnicas e de identificação, bem como seus dados operacionais, por meio de uma estrutura de elementos modulares e hierĆ”rquicos, garantindo desse modo a padronização de componentes e a interoperabilidade entre sistemas. Neste trabalho serĆ” apresentada uma abordagem baseada em um cenĆ”rio real de linha de montagem automotiva, com o intuito de implementar e digitalizar os equipamentos de medição geomĆ©trica presentes na fĆ”brica, utilizando os conceitos e normas estabelecidos pelo Asset Administration Shell. Com suporte da ferramenta de interface grĆ”fica AASX Package Explorer, serĆ” desenvolvido o modelo passivo do ativo e, posteriormente, o modelo reativo, este que utilizarĆ” o framework FastAPI para o gerenciamento em tempo real dos dados obtidos junto ao modelo da estrutura. Os desafios enfrentados e os resultados obtidos no estudo serĆ£o discutidos de forma crĆtica, relacionando-os com as tecnologias atuais aplicadas no cenĆ”rio industrial.
Driven by new digital technologies, developments in industrial manufacturing systems are transforming the traditional operating methods adopted by companies, optimizing production processes and innovation capacity. The implementation of these technologies has made it possible to digitize industrial assets, enabling real-time monitoring, predictive analysis and faster decision-making compared to previous technologies. Emerging in Industry 4.0, the Asset Administration Shell appears as a form of digital representation of an asset, informing its technical and identification characteristics, as well as its operational data, through an architecture of modular and hierarchical elements, ensuring the standardization of components and interoperability between systems. This paper will present an approach based on a real automotive assembly line scenario, with the purpose of implementing and digitizing the geometric measuring equipment present in the factory, using the concepts and standards established by the Asset Administration Shell. With the support of the AASX Package Explorer graphical interface tool, the passive model of the asset will be developed, followed by the reactive model, which will use the FastAPI framework for real-time management of the data obtained alongside the model. The challenges faced and the results obtained in the study will be discussed critically, relating them to the theories and methods used.
Driven by new digital technologies, developments in industrial manufacturing systems are transforming the traditional operating methods adopted by companies, optimizing production processes and innovation capacity. The implementation of these technologies has made it possible to digitize industrial assets, enabling real-time monitoring, predictive analysis and faster decision-making compared to previous technologies. Emerging in Industry 4.0, the Asset Administration Shell appears as a form of digital representation of an asset, informing its technical and identification characteristics, as well as its operational data, through an architecture of modular and hierarchical elements, ensuring the standardization of components and interoperability between systems. This paper will present an approach based on a real automotive assembly line scenario, with the purpose of implementing and digitizing the geometric measuring equipment present in the factory, using the concepts and standards established by the Asset Administration Shell. With the support of the AASX Package Explorer graphical interface tool, the passive model of the asset will be developed, followed by the reactive model, which will use the FastAPI framework for real-time management of the data obtained alongside the model. The challenges faced and the results obtained in the study will be discussed critically, relating them to the theories and methods used.
Description
Mestrado de dupla diplomação com a Universidade Tecnológica Federal do ParanÔ
Keywords
Asset administration shell IndĆŗstria 4.0 RAMI 4.0 Digitalização Sistemas ciberfĆsicos AASX package explorer FastAPI