Bibliometric study on intelligent processes in manufacturing in the SCOPUS database
Keywords:
Intelligent processes; Manufacturing; ProcessesAbstract
Objective: to characterize the scientific production in the Scopus database on intelligent processes in manufacturing. Methodology: exploratory-descriptive study, time frame: 1982-2023. Study units: original materials published in Scopus as a result of the selected search string. R was used for bibliometric indicator analysis, Microsoft Excel 2003 only to organize and verify the information, and VOSviewer for keyword mapping. Results and Discussion: Scientific production in the field shows a growing trend over the period analyzed, with a predominance of publications in English and Chinese. Research was mainly conducted in China and the United States. The 6 most productive authors published at least 4 documents each. Reference co-citation analysis revealed 2 main clusters: strategic technology management, and sensors and technologies for measuring and detecting physical variables. Keyword co-occurrence was analyzed for terms appearing in at least 10 documents. The 10 most frequently used keywords and their use over time were identified. Conclusions: there is a growing interest in intelligent processes in manufacturing, reflected in the increase in publications in recent years. Prominent research areas include process optimization and intelligent automation. The study is limited by the exclusive use of Scopus and by the lexical delimitation adopted in the search strategy. Originality/Value: understanding trends in the field allows researchers to stay updated on recent advancements and identify gaps in existing knowledge
Downloads
References
REFERENCIAS BIBLIOGRÁFICAS
Abramo, G., D’Angelo, C. A., & Di Costa, F. (2009). Research collaboration and productivity: Is there correlation? Higher Education, 57, 155-171. https://doi.org/10.1007/s10734-008-9139-z
Alberca Sialer, F. A. (2020). Sobre los estudios bibliométricos en turismo. Cultura: Revista de la Asociación de Docentes de la USMP, 34. https://www.academia.edu/download/86384001/RCU_34_estudios-bibliometricos.pdf
Andrés-Rodríguez, N. F., Andrés-Iglesias, J. C., & Fornos-Pérez, J. A. (2021). Análisis bibliométrico de la revista ‘Farmacéuticos Comunitarios’(2009-2020)(I): indicadores de productividad y autoría. Farmacéuticos comunitarios, 13(4), 12-20. https://www.raco.cat/index.php/FC/article/view/392928
Bordons, M., Morillo, F., Moreno, L., Aparicio, J., & González-Albo, B. (2020). La actividad científica del CSIC a través de indicadores bibliométricos. In: CSIC - Instituto de Filosofía (Madrid)
CSIC - Centro de Ciencias Humanas y Sociales (CCHS).
Brockhoff, K. (1991). Competitor technology intelligence in German companies. Industrial Marketing Management, 20(2), 91-98. https://doi.org/10.1016/0019-8501(91)90027-D
Castillo, A. A. V., Samada, R. E. D., & Pozo, Y. M. (2019). Indicadores bibliométricos aplicables a la producción científica individual. Universidad Médica Pinareña, 15(2), 279-285. https://dialnet.unirioja.es/servlet/articulo?codigo=7091082
Choi, S. O., Kawahito, S., Matsumoto, Y., Ishida, M., & Tadokoro, Y. (1996). An integrated micro fluxgate magnetic sensor. Sensors and Actuators A: Physical, 55(2-3), 121-126. https://doi.org/10.1016/S0924-4247(97)80066-0
Cortés, C. B. Y., Landeta, J. M. I., Chacón, J. G. B., Pereyra, F. A., & Osorio, M. L. (2017). El entorno de la industria 4.0: implicaciones y perspectivas futuras. Conciencia Tecnológica(54). https://www.redalyc.org/journal/944/94454631006/94454631006.pdf
Egghe, L. (2006). Theory and practise of the g-index. Scientometrics, 69(1), 131-152. https://doi.org/10.1007/s11192-006-0144-7
Elwenspoek, M., & Wiegerink, R. J. (2001). Mechanical microsensors. Springer Science & Business Media. https://n9.cl/5z5ya
Fernandez, D., Dastane, O., Omar Zaki, H., & Aman, A. (2023). Robotic process automation: bibliometric reflection and future opportunities. European Journal of Innovation Management, ahead-of-print(ahead-of-print). https://doi.org/10.1108/EJIM-10-2022-0570
Figliola, R. S., & Beasley, D. E. (2001). Theory and design for mechanical measurements. Measurement Science and Technology, 12(10), 1743. https://doi.org/10.1088/0957-0233/12/10/701
Gallegos, M., Pérez-Acosta, A. M., Klappenbach, H., López López, W., & Bregman, C. (2020). Los estudios bibliométricos en el campo de la psicología iberoamericana: Una revisión metabibliométrica. Interdisciplinaria, 37(2), 95-116. http://www.scielo.org.ar/scielo.php?pid=S1668-70272020000200095&script=sci_arttext
García-Villar, C., & García-Santos, J. (2021). Indicadores bibliométricos para evaluar la actividad científica. Radiología, 63(3), 228-235. https://www.sciencedirect.com/science/article/abs/pii/S0033833821000266
Gerybadze, A. (1994). Technology forecasting as a process of organisational intelligence. R&D Management, 24(2), 131-140. https://doi.org/10.1111/j.1467-9310.1994.tb00865.x
Gregorio-Chaviano, O., Repiso, R., Calderón-Rehecho, A., León-Marín, J., & Jiménez-Contreras, E. (2021). Dialnet Métricas como herramienta de evaluación bibliométrica: aportes al análisis de la actividad científica en Ciencias Sociales y Humanidades. Profesional de la información, 30(3).
Hirsch, J. E. (2005). An index to quantify an individual's scientific research output. Proceedings of the National Academy of Sciences, 102(46), 16569-16572. https://doi.org/10.1073/pnas.0507655102
Aguilar, F. J. (1967). Scanning the business environment. Macmillan.
Leydesdorff, L. B., L. . (2016). Conference papers in the age of the internet: What are cited and what citable? Journal of the Association for Information Science and Technology, 67(11), 2764-2775.
Martínez, R. S., Carrasco, L. V. M., & Almeida, L. A. A. (2023). Tendencias de investigación en Economía del Desarrollo: Un análisis bibliométrico. Journal of Science and Research: Revista Ciencia e Investigación, 8(3), 142-150. https://dialnet.unirioja.es/servlet/articulo?codigo=9048724
Mesa Fernández, J. M., González Moreno, J. J., Vergara-González, E. P., & Alonso Iglesias, G. (2022). Bibliometric analysis of the application of artificial intelligence techniques to the management of innovation projects. Applied Sciences, 12(22), 11743. https://doi.org/10.3390/app122211743
Middelhoek, S., Bellekom, A., Dauderstadt, U., French, P., Kindt, W., Riedijk, F., & Vellekoop, M. (1995). Silicon sensors. Measurement Science and Technology, 6(12), 1641. https://doi.org/10.1088/0957-0233/6/12/001
MINTIC. (2022). Manual de gobierno digital. 62. https://gobiernodigital.mintic.gov.co/692/articles-272977_Decreto_767_2022.pdf
Moed, H. F. (2006). Citation analysis in research evaluation (Vol. 9). Springer Science & Business Media. https://n9.cl/3vuqql
Paz, M. A. L., & Avecillas, M. E. A. (2021). Indicadores bibliométricos: origen, definición y aplicaciones científicas en el ecuadorR. Espíritu Emprendedor TES, 5(1), 130-153. https://www.espirituemprendedortes.com/index.php/revista/article/view/253
Pérez-Campdesuñer, R., & Andrare-Molina, P. G. (2022). La Gestión de la Producción a partir de Modelos Inteligentes para la Industria 4.0: Retos y Oportunidades. Economía y Negocios, 13(2), 1-15. https://www.redalyc.org/journal/6955/695574853001/695574853001.pdf
Rivera-Arroyo, J. K., Araya-Castillo, L., Ganga-Contreras, F., Torres, J. P., & Morales, F. S. (2021). Análisis bibliométrico de la investigación en calidad de servicio. Interciencia, 46(11), 404-415. https://www.redalyc.org/journal/339/33969826002/33969826002.pdf
Singapore Economic Development Board. (2017). The Singapore Smart Industry Readiness Index: Catalysing the transformation of manufacturing. https://n9.cl/tc3lc
Tomás-Górriz, V., & Tomás-Casterá, V. (2018). La Bibliometría en la evaluación de la actividad científica. Hospital a Domicilio, 2(4), 145-163. https://doi.org/10.22585/hospdomic.v2i4.51
Truong, B. Q., Nguyen-Duc, A., & Van, N. T. C. (2023). A quantitative review of the research on business process management in digital transformation: A bibliometric approach. Software, 2(3), 377-399. https://doi.org/10.3390/software2030018
Valle, L. V., Vazquez, M. A. W., & Aros, E. L. A. (2021). Uso de las tecnologías de la información en los procesos decisorios: un análisis bibliométrico. Revista Venezolana de Gerencia: RVG, 26(93), 92-109. https://dialnet.unirioja.es/servlet/articulo?codigo=8890375
Wolffenbuttel, R. (1996). Silicon sensors and circuits: on-chip compatibility. Springer Science & Business Media. https://n9.cl/svruh
Zhang, C., Zhou, G., Hu, J., & Li, J. (2020). Deep learning-enabled intelligent process planning for digital twin manufacturing cell. Knowledge-Based Systems, 191. https://doi.org/10.1016/j.knosys.2019.105247
Downloads
Published
Versions
- 2026-08-31 (2)
- 2026-08-31 (1)
How to Cite
Issue
Section
License
Copyright (c) 2026 Bibliotecas. Anales de investigación

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.




