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TF4SM: A Framework for Developing Traceability Solutions in Small Manufacturing Companies.

Borja Bordel Sánchez1, Ramón Alcarria2, Diego Martín3

  • 1Departamento de Ingeniería de Sistemas Telemáticos, Universidad Politécnica de Madrid, Avenida Complutense n°30, Madrid 28040, Spain. bbordel@dit.upm.es.

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Summary

This study introduces a cyber-physical system framework for product traceability in small manufacturing companies. The proposed system enhances efficiency and reduces reaction times compared to traditional methods.

Keywords:
BluetoothRFIDcybernetic devicescybernetic glovecybernetic tablemanufacturing execution systemprosumerreal-time manufacturingtraceability

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Area of Science:

  • Manufacturing Systems Engineering
  • Industrial Informatics
  • Cyber-Physical Systems

Background:

  • Increasing complexity in manufacturing processes necessitates robust product traceability.
  • Regulatory bodies mandate traceability for sensitive products like food and clinical materials.
  • Small manufacturers face challenges adopting existing commercial traceability solutions due to cost and complexity.

Purpose of the Study:

  • To propose a novel cyber-physical system (CPS) framework for developing adaptable traceability systems.
  • To address the specific needs and constraints of small manufacturing enterprises.
  • To evaluate the efficacy of the proposed framework against traditional traceability methods.

Main Methods:

  • Development of a general theoretical framework for CPS-based traceability.
  • Analysis of traceability requirements for small manufacturing companies.
  • Design of a reference architecture integrating theoretical framework and company requirements.
  • Implementation of a minimum functional prototype for empirical validation.

Main Results:

  • The developed CPS framework provides a viable solution for small manufacturers.
  • Empirical comparison demonstrates reduced inefficiencies in the proposed system.
  • The system significantly decreases reaction times compared to tag-based traceability.

Conclusions:

  • The proposed cyber-physical system framework offers a scalable and effective solution for product traceability in small manufacturing settings.
  • This approach overcomes limitations of commercial systems for smaller enterprises.
  • The framework contributes to improved operational efficiency and responsiveness in manufacturing traceability.