Published November 2, 2023 | Version v1
Journal article Open

Automated Monitoring System Development for Equipment Modernization

  • 1. Department of Computer-Integrated Technologies, Automation and Robotics, Kharkiv National University of Radio Electronics, Ukraine

Description

This study examines a problem that arises from the incompatibility of two factors. The first is the desire to improve the enterprise in accordance with the concept of Industry 4.0. And the second is the lack of sufficient material resources due to the high cost of purchasing new equipment that will meet the requirements of Industry 4.0.

In this article, to solve the problem of modernizing enterprise equipment, it is proposed to create a monitoring system. The development of the system architecture is considered. Hardware complex development on the Arduino platform is also given. 

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References

  • 1. Lemstra, M. A. M. S., & de Mesquita, M. A. (2023). Industry 4.0: A tertiary literature review. Technological Forecasting and Social Change, 186, 122204.
  • 2. Pozzi, R., & et al. (2023). Industry 4.0 technologies: critical success factors for implementation and improvements in manufacturing companies. Production Planning & Control, 34(2), 139-158.
  • 3. Antony, J., & et al. (2023). Conceptualizing Industry 4.0 readiness model dimensions: An exploratory sequential mixed-method study. The TQM Journal, 35(2), 577-596.
  • 4. Morteza Ghobakhloo, (2020). Industry 4.0, digitization, and opportunities for sustainability, Journal of Cleaner Production, 252, 119869.
  • 5. Gustavo Dalmarco, & et al. (2019) Providing industry 4.0 technologies: The case of a production technology cluster. The Journal of High Technology Management Research, 30(2), 100355.
  • 6. Luca Silvestri, & et al. (2020). Maintenance transformation through Industry 4.0 technologies: A systematic literature review, Computers in Industry, 123, 103335.
  • 7. Nevliudov, I., Yevsieiev, V., Baker, J. H., Ahmad, M. A., & Lyashenko, V. (2020). Development of a cyber design modeling declarative Language for cyber physical production systems. J. Math. Comput. Sci., 11(1), 520-542.
  • 8. Nevliudov, I., & et al.. (2020). Method of Algorithms for Cyber-Physical Production Systems Functioning Synthesis. International Journal of Emerging Trends in Engineering Research, 8(10), 7465-7473.
  • 9. Lyashenko, V., Ahmad, M. A., Sotnik, S., Deineko, Z., & Khan, A. (2018). Defects of communication pipes from plastic in modern civil engineering. International Journal of Mechanical and Production Engineering Research and Development, 8(1), 253-262.
  • Nevliudov, I., Yevsieiev, V., Lyashenko, V., & Ahmad, M. A. (2021). GUI Elements and Windows Form Formalization Parameters and Events Method to Automate the Process of Additive Cyber-Design CPPS Development. Advances in Dynamical Systems and Applications, 16(2), 441-455.