La dirección de proyectos en las industrias 4.0, habilitadores tecnológicos y perspectivas - revisión
En el marco de la transición hacia la industria 4.0, este trabajo ofrece un contexto general de las tecnologías, los métodos, y estrategias organizativas, entendidas como habilitadores tecnológicos para dicha transición; justificado en las dificultades y desafíos que las empresas enfrentan en la act...
- Autores:
-
Quintero Ramírez, Sara Isabel
- Tipo de recurso:
- Trabajo de grado de pregrado
- Fecha de publicación:
- 2021
- Institución:
- Universidad Cooperativa de Colombia
- Repositorio:
- Repositorio UCC
- Idioma:
- OAI Identifier:
- oai:repository.ucc.edu.co:20.500.12494/34391
- Acceso en línea:
- https://hdl.handle.net/20.500.12494/34391
- Palabra clave:
- Habilitadores tecnológicos
Revolución tecnológica
Dirección de proyectos
TG 2021 IIN 34391
Technological enablers
Technological revolution
Project management
- Rights
- openAccess
- License
- Atribución
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dc.title.spa.fl_str_mv |
La dirección de proyectos en las industrias 4.0, habilitadores tecnológicos y perspectivas - revisión |
title |
La dirección de proyectos en las industrias 4.0, habilitadores tecnológicos y perspectivas - revisión |
spellingShingle |
La dirección de proyectos en las industrias 4.0, habilitadores tecnológicos y perspectivas - revisión Habilitadores tecnológicos Revolución tecnológica Dirección de proyectos TG 2021 IIN 34391 Technological enablers Technological revolution Project management |
title_short |
La dirección de proyectos en las industrias 4.0, habilitadores tecnológicos y perspectivas - revisión |
title_full |
La dirección de proyectos en las industrias 4.0, habilitadores tecnológicos y perspectivas - revisión |
title_fullStr |
La dirección de proyectos en las industrias 4.0, habilitadores tecnológicos y perspectivas - revisión |
title_full_unstemmed |
La dirección de proyectos en las industrias 4.0, habilitadores tecnológicos y perspectivas - revisión |
title_sort |
La dirección de proyectos en las industrias 4.0, habilitadores tecnológicos y perspectivas - revisión |
dc.creator.fl_str_mv |
Quintero Ramírez, Sara Isabel |
dc.contributor.advisor.none.fl_str_mv |
Rincon Guio, Cristian Alexander |
dc.contributor.author.none.fl_str_mv |
Quintero Ramírez, Sara Isabel |
dc.subject.spa.fl_str_mv |
Habilitadores tecnológicos Revolución tecnológica Dirección de proyectos |
topic |
Habilitadores tecnológicos Revolución tecnológica Dirección de proyectos TG 2021 IIN 34391 Technological enablers Technological revolution Project management |
dc.subject.classification.spa.fl_str_mv |
TG 2021 IIN 34391 |
dc.subject.other.spa.fl_str_mv |
Technological enablers Technological revolution Project management |
description |
En el marco de la transición hacia la industria 4.0, este trabajo ofrece un contexto general de las tecnologías, los métodos, y estrategias organizativas, entendidas como habilitadores tecnológicos para dicha transición; justificado en las dificultades y desafíos que las empresas enfrentan en la actualidad; la globalización y la competitividad; la desigualdad económica; los baches en la educación; entre otros factores. Para lo anterior se hizo una revisión bibliográfica exhaustiva de documentos que abordaran estos temas desde la perspectiva de los proyectos industriales y las fábricas 4.0, lo que permitió identificar las tendencias más importantes en la industria 4.0; también se discutieron las potencialidades y dificultades identificadas por diferentes autores. |
publishDate |
2021 |
dc.date.accessioned.none.fl_str_mv |
2021-05-28T13:02:06Z |
dc.date.available.none.fl_str_mv |
2021-05-28T13:02:06Z |
dc.date.issued.none.fl_str_mv |
2021-05-21 |
dc.type.none.fl_str_mv |
Trabajo de grado - Pregrado |
dc.type.coar.none.fl_str_mv |
http://purl.org/coar/resource_type/c_7a1f |
dc.type.driver.none.fl_str_mv |
info:eu-repo/semantics/bachelorThesis |
dc.type.version.none.fl_str_mv |
info:eu-repo/semantics/acceptedVersion |
format |
http://purl.org/coar/resource_type/c_7a1f |
status_str |
acceptedVersion |
dc.identifier.uri.none.fl_str_mv |
https://hdl.handle.net/20.500.12494/34391 |
dc.identifier.bibliographicCitation.spa.fl_str_mv |
Quintero Ramirez, S. I. (2021). La dirección de proyectos en las industrias 4.0, habilitadores tecnológicos y perspectivas - revisión. [ Tesis de pregrado, Universidad Cooperativa de Colombia]. Repositorio Institucional UCC. http://hdl.handle.net/20.500.12494/34391 |
url |
https://hdl.handle.net/20.500.12494/34391 |
identifier_str_mv |
Quintero Ramirez, S. I. (2021). La dirección de proyectos en las industrias 4.0, habilitadores tecnológicos y perspectivas - revisión. [ Tesis de pregrado, Universidad Cooperativa de Colombia]. Repositorio Institucional UCC. http://hdl.handle.net/20.500.12494/34391 |
dc.relation.references.spa.fl_str_mv |
AKBIYIKLI, R., DİKMEN, S. Ü., UĞUR, L. O., & ATEŞ, A. (2018). Forsight and Trends in Construction Project Management. ALLAM, Z., & JONES, D. S. (2021). Future (post-COVID) digital, smart and sustainable cities in the wake of 6G: Digital twins, immersive realities and new urban economies. Land Use Policy, 101, 105201. AL-NABAE, M. G., & SAMMANI, D. (2019, JUNE). The Training Methods That Enhance Project Performance. In Proceeding: International Conference on Business, Education, Innovation & Social Sciences ICBEISS (pp. 362-372). BAADER, F., BORGWARDT, S., KOOPMANN, P., THOST, V., & TURHAN, A. Y. (2020). Semantic technologies for situation awareness. KI-Künstliche Intelligenz, 34(4), 543-550. BAG, S., YADAV, G., DHAMIJA, P., & KATARIA, K. K. (2020). Key resources for industry 4.0 adoption and its effect on sustainable production and circular economy: An empirical study. Journal of Cleaner Production, 125233 BAGWELL, T. C., CROPF, R. A., & FOSTER-GADKARI, S. L. (Eds.). (2018). Information Technology as a Facilitator of Social Processes in Project Management and Collaborative Work. IGI Global. BATHELT, J., POLITZE, D., JUFER, N., JÖNSSON, A., & KUNZ, A. (2010). Factory of the future enabled by the virtual factory framework (VFF). In 7th International DAAAM Baltic Conference (pp. 203-208). Eidgenössische Technische Hochschule Zürich, Departement für Maschinenbau und Verfahrenstechnik, Institut für Werkzeugmaschinen und Fertigung BAUER, W., SCHULER, S., HORNUNG, T., & DECKER, J. (2019). Development of a procedure model for human-centered industry 4.0 projects. Procedia Manufacturing, 39, 877-885. BECUE, A., FOURASTIER, Y., PRAÇA, I., SAVARIT, A., BARON, C., GRADUSSOFS, B., & THOMAS, C. (2018, June). CyberFactory# 1—Securing the industry 4.0 with cyber-ranges and digital twins. In 2018 14th IEEE International Workshop on Factory Communication Systems (WFCS) (pp. 1-4). IEEE. BENEŠOVÁ, A., HIRMAN, M., STEINER, F., & TUPA, J. (2019). Determination of changes in process management within industry 4.0. Procedia Manufacturing, 38, 1691-1696. BERTEAUX, F., & JAVERNICK-WILL, A. (2015). Adaptation and integration for multinational project-based organizations. Journal of management in engineering, 31(6), 04015008. BIRKEL, H. S., & MÜLLER, J. M. (2020). Potentials of Industry 4.0 for Supply Chain Management within the Triple Bottom Line of Sustainability–A Systematic Literature Review. Journal of Cleaner Production, 125612. BOGOVIZ, A. V., KURILOVA, A. A., TARASOVA, I. A., LITVINOVA, T. N., & LIKHOLETOV, E. A. (2021). Production planning and supply chain management under the conditions of Industry 4.0. In Advances in Mathematics for Industry 4.0 (pp. 189-210). Academic Press. BRUYNSEELS, K., SANTONI DE SIO, F., & VAN DEN HOVEN, J. (2018). Digital twins in health care: ethical implications of an emerging engineering paradigm. Frontiers in genetics, 9, 31. CANDÓN, E., MARTÍNEZ-GALÁN, P., DE LA FUENTE, A., GONZÁLEZ-PRIDA, V., MÁRQUEZ, A. C., GÓMEZ, J., & MACCHI, M. (2019). Implementing intelligent asset management systems (IAMS) within an industry 4.0 manufacturing environment. IFAC-PapersOnLine, 52(13), 2488-2493. CARDONA-MEZA, L. S., & OLIVAR-TOST, G. (2017). Modeling and simulation of project management through the PMBOK® standard using complex networks. Complexity, 2017. CHAIKOVSKA, M. (2017). Metodological bases of IT project management with simulation modelling tools. Scientific Journal of Polonia University, 21(2), 55-66. CHOI, J. O., O’CONNOR, J. T., KWAK, Y. H., & SHRESTHA, B. K. (2019). Modularization business case analysis model for industrial projects. Journal of Management in Engineering, 35(3), 04019004. CHOI, T. M. (2018). A system of systems approach for global supply chain management in the big data era. IEEE Engineering Management Review, 46(1), 91-97. DAHMEN, U., & ROSSMANN, J. (2018, October). Experimentable digital twins for a modeling and simulation-based engineering approach. In 2018 IEEE International Systems Engineering Symposium (ISSE) (pp. 1-8). IEEE. DALLASEGA, P., RAUCH, E., & FROSOLINI, M. (2018). A lean approach for real-time planning and monitoring in engineer-to-order construction projects. Buildings, 8(3), 38. DAMJANOVIC-BEHRENDT, V., & BEHRENDT, W. (2019). An open source approach to the design and implementation of Digital Twins for Smart Manufacturing. International Journal of Computer Integrated Manufacturing, 32(4-5), 366-384 DE LA PEÑA ZARZUELO, I., SOEANE, M. J. F., & BERMÚDEZ, B. L. (2020). Industry 4.0 in the port and maritime industry: A literature review. Journal of Industrial Information Integration, 100173. DE PAULA FERREIRA, W., ARMELLINI, F., & DE SANTA-EULALIA, L. A. (2020). Simulation in industry 4.0: A state-of-the-art review. Computers & Industrial Engineering, 106868. DEL GAUDIO, D., & HIRMER, P. (2020). Seamless integration of devices in industry 4.0 environments. Internet of Things, 12, 100321. DONOGHUE, I., HANNOLA, L., PAPINNIEMI, J., & MIKKOLA, A. (2018, July). The Benefits and Impact of Digital Twins in Product Development Phase of PLM. In IFIP International Conference on Product Lifecycle Management (pp. 432-441). Springer, Cham. DU, J., ZHU, Q., SHI, Y., WANG, Q., LIN, Y., & ZHAO, D. (2020). Cognition digital twins for personalized information systems of smart cities: Proof of concept. Journal of Management in Engineering, 36(2), 04019052. EKEOCHA, R. J., & OGBONNAYA, S. K. (2018). Relevance of modeling and simulation in the management of engineering projects. Journal of Mechanical Engineering Research, 10(3), 21-27. ENGELHARDT, N. (2019). Comparison of Agile and Traditional Project Management: Simulation of Process Models. Acta Académica Karviniensia, 19(2), 15-27. ESMAEILIAN, B., SARKIS, J., LEWIS, K., & BEHDAD, S. (2020). Blockchain for the future of sustainable supply chain management in Industry 4.0. Resources, Conservation and Recycling, 163, 105064. FORTINO, G., SAVAGLIO, C., SPEZZANO, G., & ZHOU, M. (2020). Internet of Things as System of Systems: A Review of Methodologies, Frameworks, Platforms, and Tools. IEEE Transactions on Systems, Man, and Cybernetics: Systems. GHIMIRE, S., LUIS-FERREIRA, F., NODEHI, T., & JARDIM-GONCALVES, R. (2017). IoT based situational awareness framework for real-time project management. International Journal of Computer Integrated Manufacturing, 30(1), 74-83. GHOBAKHLOO, M. (2020). Industry 4.0, digitization, and opportunities for sustainability. Journal of Cleaner Production, 252, 119869 GOMEZ, J. Z., MONTENEGRO, J. L., DOS SANTOS, J. V. C., BARBOSA, J. L. V., & COSTA, C. A. (2019). A Strategy Using Continuous Simulation to Mitigate Effort Estimation Risks in Software Projects. IEEE Latin America Transactions, 17(08), 1390-1398. GÖTZ, C. S., KARLSSON, P., & YITMEN, I. (2020). Exploring applicability, interoperability and integrability of Blockchain-based digital twins for asset life cycle management. Smart and Sustainable Built Environment. GOZLUKLU, B. (2017). A new project management system dynamics model and simulator (Doctoral dissertation, Massachusetts Institute of Technology). GURYANOVA, D. A., GURYANOV, A. V., & ZHARINOV, I. O. (2020, May). Omni-channel customization of industrial production. In IOP Conference Series: Materials Science and Engineering (Vol. 862, No. 4, p. 042038). IOP Publishing. HADDARA, M., & ELRAGAL, A. (2015). The Readiness of ERP Systems for the Factory of the Future. Procedia computer science, 64, 721-728 HALLINGER, P., & WANG, R. (2020). Analyzing the intellectual structure of research on simulation-based learning in management education, 1960–2019: A bibliometric review. The International Journal of Management Education, 18(3), 100418. HASSANI, R., & IDRISSI, Y. E. B. E. (2018, April). 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IFAC-PapersOnLine, 52(10), 171-175. JIMENO-MORENILLA, A., AZARIADIS, P., MOLINA-CARMONA, R., KYRATZI, S., & MOULIANITIS, V. (2021). Technology enablers for the implementation of Industry 4.0 to traditional manufacturing sectors: A review. Computers in Industry, 103390. JIN, G., SPERANDIO, S., & GIRARD, P. (2017). Management of the design process: Human resource allocation in factories of the future. Insight, 20(4), 19-22 JONES, D. E., SNIDER, C., KENT, L., & HICKS, B. (2019, July). Early Stage Digital Twins for Early Stage Engineering Design. In Proceedings of the Design Society: International Conference on Engineering Design (Vol. 1, No. 1, pp. 2557-2566). Cambridge University Press KADIR, B. A., & BROBERG, O. (2021). Human-centered design of work systems in the transition to industry 4.0. Applied Ergonomics, 92, 103334 KANG, Y., O’BRIEN, W. J., & O’CONNOR, J. T. (2015). Information-integration maturity model for the capital projects industry. 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International Journal of Computer Integrated Manufacturing, 31(4-5), 362-379. ZHU, J., & MOSTAFAVI, A. (2017). Performance assessment in complex engineering projects using a system-of-systems framework. IEEE Systems Journal, 12(1), 262-273. ZOROJA, J., BACH, M. P., & MILOLOŽA, I. (2019, May). Developing Leadership in a Simulation-Games Environment. In 2019 42nd International Convention on Information and Communication Technology, Electronics and Microelectronics (MIPRO) (pp. 806-811). IEEE. |
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Rincon Guio, Cristian AlexanderQuintero Ramírez, Sara Isabel2021-05-28T13:02:06Z2021-05-28T13:02:06Z2021-05-21https://hdl.handle.net/20.500.12494/34391Quintero Ramirez, S. I. (2021). La dirección de proyectos en las industrias 4.0, habilitadores tecnológicos y perspectivas - revisión. [ Tesis de pregrado, Universidad Cooperativa de Colombia]. Repositorio Institucional UCC. http://hdl.handle.net/20.500.12494/34391En el marco de la transición hacia la industria 4.0, este trabajo ofrece un contexto general de las tecnologías, los métodos, y estrategias organizativas, entendidas como habilitadores tecnológicos para dicha transición; justificado en las dificultades y desafíos que las empresas enfrentan en la actualidad; la globalización y la competitividad; la desigualdad económica; los baches en la educación; entre otros factores. Para lo anterior se hizo una revisión bibliográfica exhaustiva de documentos que abordaran estos temas desde la perspectiva de los proyectos industriales y las fábricas 4.0, lo que permitió identificar las tendencias más importantes en la industria 4.0; también se discutieron las potencialidades y dificultades identificadas por diferentes autores.In the framework of the transition to Industry 4.0, this work offers a general context of the technologies, methods, and organizational strategies, understood as technological enablers for said transition; justified in the difficulties and challenges that companies face today; globalization and competitiveness; economic inequality; potholes in education; Inter alia. For the above, an exhaustive bibliographic review of documents that addressed these issues from the perspective of industrial projects and factories 4.0 was made, which allowed identifying the most important trends in industry 4.0; The potentialities and difficulties identified by different authors were also discussed.Introducción. --1. Justificación. --2. Metodología. --3. Resultados y discusión. -- 3.1. Herramientas y tecnologías habilitadores industria 4.0. --3.1.1. Integración /interconexión. --3.1.2. El internet de las cosas (IoT). -- 3.1.3. Bigdata Analytics / Análisis de grandes volúmenes de información. -- 3.1.4. Sistemas ciber físicos. -- 3.1.5. Gestión de la Cadena de suministro (GCS). --3.1.6. Simulación. --3.1.7. Los gemelos digitales [Digital Twins]. -- 3.1.8 Soluciones en tiempo real. -- 3.1.9. Las interfaces y la semántica.-- 3.1.10. Los modelos organizativos. -- 3.1.11. Recurso humano y la cultura organizacional. -- 3.1.12. Entrenamiento del capital humano. -- 3.1.13. La transformación de los espacios de trabajo (framework 4.0). -- 3.1.14. Tendencias de la industria 4.0. -- 3.1.15. ¿Que se viene? -- 3.1.16 Los productos y los servicios a demanda. -- 4. Conclusiones--bibliografía.sara.quinteror@campusucc.edu.co41 p.Universidad Cooperativa de Colombia, Facultad de Ingenierías, Ingeniería Industrial, NeivaIngeniería IndustrialNeivaHabilitadores tecnológicosRevolución tecnológicaDirección de proyectosTG 2021 IIN 34391Technological enablersTechnological revolutionProject managementLa dirección de proyectos en las industrias 4.0, habilitadores tecnológicos y perspectivas - revisiónTrabajo de grado - Pregradohttp://purl.org/coar/resource_type/c_7a1finfo:eu-repo/semantics/bachelorThesisinfo:eu-repo/semantics/acceptedVersionAtribucióninfo:eu-repo/semantics/openAccesshttp://purl.org/coar/access_right/c_abf2AKBIYIKLI, R., DİKMEN, S. Ü., UĞUR, L. O., & ATEŞ, A. (2018). Forsight and Trends in Construction Project Management.ALLAM, Z., & JONES, D. S. (2021). 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