100746 - Tópicos Especiais para o Desenvolvimento de Produtos/Serviços Inteligentes e Conectados |
Período da turma: | 21/02/2022 a 21/02/2024
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Descrição: | Ementa
1. Entender os principais aspectos por trás da 4ª revolução industrial associada às tecnologias 4.0 - apesar de ser uma revolução industrial, ela não é apenas tecnológica; 2. A abrangência do conceito de Indústria 4.0; 3. Cyber Physical System (CPS); 4. Digital Twin; 5. Internet das Coisas (IoT); 6. Arquitetura orientada a serviços (SOA); 7. Big data & analytics; 8. Cloud computing; 9. Competências que o ser humano deve desenvolver para interagir com este novo cenário envolvendo técnicas, tecnologias e ciência; 10. Características de Produtos e Serviços 4.0. Bibliografia • ADOLPHS, P.; BEDENBENDER, H.; DIRZUS, D.; EHLICH, M.; EPPLE, U.; HANKEL, M.; HEIDEL, R.; HOFFMEISTER, M.; HUHLE, H.; KARCHER, B.; KOZIOLEK, H.; PICHLER, R.; POLLMEIER, S.; SCHEWE, F.; WALTER, A.; WASER, B.; WOLLSCHLAEGER, M. Status report: reference architecture model Industrie 4.0 (RAMI4.0). Verein Deutscher Ingenieure (VDI), 2015. • ATZORI, L.; IERA, A.; MORABITO, G. The Internet of Things: a survey. Computer Networks, v. 54, n. 15, pp. 2787-2805, 2010. • BRAUNE, A.; DIESNER, M.; HÜTTEMANN, G.; KLEIN, M.; LÖWEN, U.; THRON, M. Status report: Industrie 4.0 components - modeling examples, Verein Deutscher Ingenieure (VDI), 2016. • DELSING, J. Local cloud internet of things automation: technology and business model features of distributed internet of things automation solutions. IEEE Industrial Electronics Magazine, v. 11, n. 4, pp. 8-21, 2017. • HERTERICH, M. M.; UEBERNICKEL, F.; BRENNER, W. The impact of cyber-physical systems on industrial services in manufacturing. Procedia CIRP, v. 30, pp. 323-328, 2015. • HU, F.; LU, Y.; VASILAKOS, A. V.; HAO, Q.; MA, R.; PATIL, Y.; ZHANG, T.; LU, J.; LI, X.; XIONG, N. N. Robust cyber–physical systems: concept, models, and implementation. Future generation. Computer Systems, v. 56, pp. 449-475, 2016. • LEITÃO, P.; COLOMBO, A. W.; KARNOUSKOS, S. Industrial automation based on cyber-physical systems technologies: prototype implementations and challenges. Computers in Industry, v. 81, pp. 11-25, 2016. • LIU, C.; JIANG, P. A cyber-physical system architecture in shop floor for intelligent manufacturing. Procedia CIRP, v. 56, pp. 372-377, 2016. • MONOSTORI, L.; KÁDÁR, B.; BAUERNHANSL, T.; KONDOH, S.; KUMARA, S.; REINHART, G.; SAUER, O.; SCHUH, G.; SIHN, W.; UEDA, K. Cyber-physical systems in manufacturing. Anais CIRP, v. 65, n. 2, pp 621-641, 2016. • MUMTAZ, S.; ALSOHAILY, A.; PANG, Z. Massive Internet of Things for industrial applications: addressing wireless IoT connectivity challenges and ecosystem fragmentation. IEEE Industrial Electronics Magazine, v. 11, n. 1, pp. 28-33, 2017. • NEGRI, E.; FUMAGALLI, L.; MACCHI, M. A review of the roles of digital twin in CPS-based production systems. Procedia Manufacturing, v. 11, pp. 939-948, 2017. • OPPITZ, M.; TOMSU, P. Inventing the cloud century - how cloudiness keeps changing our life, economy and technology. Editora Springer, 609 p., 2018. • PARROTT, A.; WARSHAW, L. Industry 4.0 and the digital twin - manufacturing meets its match. Editora: Deloitte University, pp. 1-20, 2017. • PENA, M. D. V.; RODRIGUEZ-ANDINA, J. J.; MANIC, M. The Internet of Things: the role of reconfigurable platforms. IEEE Industrial Electronics Magazine, v. 11, n. 3, pp. 6-19, 2017. • PENAS, O.; PLATEAUX, R.; PATALANO, S.; HAMMADI, M. Multi-scale approach from mechatronic to cyber-physical systems for the design of manufacturing systems. Computers in Industry, v. 86, pp. 52-69, 2017. • PISCHING, M. A. Arquitetura para descoberta de equipamentos em processos de manufatura com foco na Indústria 4.0. Tese de Doutorado, Escola Politécnica, Universidade de São Paulo, São Paulo, 2017. • RAWUNG, R. H.; PUTRADA, A. G. Cyber physical system: paper survey. Em: International Conference on ICT For Smart Society (ICISS), pp. 1-6, 2014. • ROSEN, R.; VON WICHERT, G.; LO, G.; BETTENHAUSEN, K. D. About the importance of autonomy and digital twins for the future of manufacturing. IFAC-PapersOnLine, v. 48, n. 3, pp. 567-572, 2015. • UHLEMANN, T. H.-J.; LEHMANN, C.; STEINHILPER, R. The digital twin: realizing the cyber-physical production system for industry 4.0. Procedia CIRP, Vol. 61, pp. 335-340, 2017. • WANG, S.; ZHANG, Y.; YANG, Z. A graphical hierarchical CPS architecture. Em: International Symposium on System and Software Reliability (ISSSR), pp. 97-105, 2016. • WOLLSCHLAEGER, M.; SAUTER, T.; JASPERNEITE, J. The future of industrial communication: automation networks in the era of the Internet of Things and Industry 4.0. IEEE Industrial Electronics Magazine, v. 11, No. 1, pp. 17 – 27, 2017. • ZHOU, Z., XIE, S., CHEN, D. Fundamentals of digital manufacturing science. Editora Springer, 2012. |
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Carga Horária: |
30 horas |
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Tipo: | Optativa | ||||
Vagas oferecidas: | 55 | ||||
Ministrantes: |
Fabrício Junqueira |
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