DOI QR코드

DOI QR Code

Derivation of Priorities for Required Functions and Operational Performance Indicators of Smart Factories Based on QFD

QFD에 기반한 스마트공장의 요구기능과 운영성과지표 우선순위 도출

  • Young-Jun Jeon (School of Industrial System Engineering, Gyeongsang National University) ;
  • Kwan-Hee Han (School of Industrial System Engineering, Gyeongsang National University)
  • 전영준 (경상국립대학교 산업시스템공학과) ;
  • 한관희 (경상국립대학교 산업시스템공학과)
  • Received : 2023.02.22
  • Accepted : 2023.06.15
  • Published : 2023.06.30

Abstract

Recently, small and medium-sized manufacturing companies have shown increased interest in and participation in smart factories in order to survive in market competition. However, many SMEs build smart factories without a systematic review or preparation, which leads to them not being able to use them properly. This study considers the main reason for the low utilization rate of smart factories to be a lack of sufficient reflection of user requirements. Therefore, a method and procedure for deriving the priority of smart factory requirement functions and operating performance indicators based on QFD is proposed as a solution to this issue.

Keywords

References

  1. Gyeongnam Smart Factory Construction Support Project Performance Analysis Survey, Gyeongnam Technopark, 2021, pp. 31-32.
  2. Han, K.H. and Park, C.W., A QFD-Based Requirements Analysis for the Development of Integrated Design & Manufacturing Information System, IE Interfaces, 2004, Vol. 17, No. 3, pp. 261-268.
  3. Hauser, J.R. and Clausing, D., The House of Quality, Harvard Business Review, 1988, pp. 63-73.
  4. Kang, J.S. and Cho, K.T., An Analysis of the Effect of Government Support on Automation and Smart Factory, Journal of Korea Technology Innovation Society, 2018, Vol.21, No. 2, pp. 738-766.
  5. Kang, W.G., Kang, S.S., and Bae, G.H., Smart factory reference model and construction plan, Proceedings of Korean Institute of Industrial Engineers Conference, 2016, Seoul, Korea, pp. 2192-2222.
  6. Kim, C.H. and Kim, K.S., Optimization of wiring process in semiconductor with 6sigma & QFD, Asia-Pacific Journal of Business and Venturing, 2012, Vol. 7, No. 3, pp. 17-25. https://doi.org/10.16972/apjbve.7.3.201209.17
  7. Kim, D.J. and Lim, C., Smartization level diagnosis model before smart factory construction, Proceedings of the Korean Society for Quality Management Conference, 2019, Seoul, Korea, pp. 42.
  8. Kim, S.T., Considerations for Successful Introduction of Smart Factory, Deloitte, 2018.
  9. Lee, H.S. and Ryu, K.Y., A phase-in methodology of implementation of MES based on manufacturing levels of SMEs measured by Key performance indicators, Proceedings of the International Conference on Korean Operations Research and Management Science Society, 2015, Jeju, Korea, pp. 665-671.
  10. Lee, J.C. and Kang, P.S., Designing and Prioritizing ICT Service Attributes for Cognitive Rehabilitation using Quality Function Deployment, Journal of Korean Institute of Information Technology, 2014, Vol. 12, No. 6, pp. 77-90. https://doi.org/10.14801/kiitr.2014.12.6.77
  11. Lee, M.S., Research on Smart Factory Establishment by Small and Medium Sized Construction Materials Enterprises, Journal of Korea Facility Management Association, 2020, Vol. 15, No. 2, pp. 23-30.
  12. Lee, S.B. and Shin, D.S., Theory and Practice of Quality Function Deployment, Sangjosa, 2002.
  13. Ministry of SMEs and Startups, https://www.korea.kr/news/pressReleaseView.do?newsId=156431980, Jan 14, 2021.
  14. Park, B.J. and Lee, J.H., Gyeongnam smart factory performance index development and future promotion plan, Current Issue Research on Gyeongnam Institute, 2019, Vol. 25, pp. 1-55.
  15. Park, J.P., Designing and Utilizing a Smart Factory Roadmap for CEOs: Leveraging from University-Industry Research Collaboration, Journal of The Korean Society of Industry Convergence, 2018, Vol. 21, No. 6, pp. 285-299. https://doi.org/10.21289/KSIC.2018.21.6.285
  16. Shin, C.H., Leem, B.H., and Kang, J.S., Evaluating Performance Factors of Container Terminals using Balanced Scorecard(BSC) and Quality Function Deployment(QFD), Journal of Navigation and Port Research, 2008, Vol. 32, No. 8, pp. 675-683. https://doi.org/10.5394/KINPR.2008.32.8.675
  17. Shin, S.J. and Ree, S.B., A proposal Key Performance Indicator by using SQ model and QFD Method, Proceedings of The Asian Journal on Quality Conference, 2010, Seoul, Korea, pp. 364-369.
  18. Smart Factory Project Manual, Smart Manufacturing Innovation Promotion Team, 2023, pp. 153.
  19. Smart Factory Reference Model(Version 3.1), Ppublic-Private Partnership Smart Factory Promotion Team, 2017.
  20. Smart Manufacturing Innovation Strategies for Small and Medium Businesses, Joint ministry of Korea Government, 2018.
  21. Sohn, Y.H., A Study for Revising the Reference Model of Smart Factory, Journal of Product Research, 2020, Vol. 38, No. 5, pp. 91-99. https://doi.org/10.36345/KACST.2020.38.5.011
  22. Sung, C.Y., A Study on the Actual Condition of Construction in Smart Factor by Small and Medium-sized Manufacturing Companies, Journal of the Korea AcademiaIndustrial Cooperation Society, 2019, Vol. 20, No. 9, pp. 182-187.