유사도 평가 방법론을 이용한 POP 시스템의 구현

Implementing a POP System using Similarity Evaluation Method

  • 김종수 (한남대학교 산업경영공학과) ;
  • 김경택 (한남대학교 산업경영공학과)
  • Kim, Chong-Su (Dept. of Industrial & Management Engineering, Hannam University) ;
  • Kim, Kyeong-Taek (Dept. of Industrial & Management Engineering, Hannam University)
  • 발행 : 2006.12.31

초록

A POP system, which collects manufacturing data from the shop floors and supply them to higher level systems, should be maintained and upgraded according to the change of production environment such as new product introduction. This situation leads to the need of a cost-effective system development methodology. In this paper, a methodology based on the classification and the similarity comparison of manufacturing processes is proposed. In this, a new product is classified according to the similarity of its manufacturing processes, which enables recycling of existing system modules. The proposed methodology has been tested in the case of an electronics parts manufacturing company, where a POP system is implemented. The result shows that the proposed methodology can save time and efforts for system implementation.

키워드

참고문헌

  1. 김성훈, 안영근; '인터넷 기반 POP시스템의 구현', IE Interfaces, 12(4) : 567-574, 1999
  2. 김종수, 경지훈; '제조공정의 분류에 기반을 둔 공정 유사도 평가', Technical Report, 한남대학교 산업경영공학과, 2005
  3. 송준엽, 차석근; 'CIM구축을 위한 POP 시스템 개발', IE magazine, 대한산업공학회, 5 : 38-46, 1995
  4. 야마구치 도시유키, 백영태 역; CIM시대의 POP시스템, 셋길출판사, 1995
  5. 조문수, 윤창원, 'Graph Theoretic Approach Solving for the Group Technology Problem', 한국경영과학회/대한산업공학회 춘계공동학술대회, pp. 147-150, 2004
  6. 중소기업청; 중소기업 생산정보화자원 구축사례집, 2004
  7. 최병욱, 이현우, 남근수; 'LCD 산업에서의 공정관리를 위한 시스템의 설계', 한국경영과학회/대한산업공학회 춘계공동학술대회, pp. 377-380, 2005
  8. Burbidge, J.; 'Operation Scheduling with GT and PBC,' International Journal of Production Research, 29 : 429-442, 1988
  9. Gallager, C. C. and Knight, W. A.; Group Technology : Production Methods in Manufacture, New York : John Wiley, 1986
  10. Kaparthi, S. and Suresh, N. C.; 'A Neural Network System for Shape-based Classification and Coding of Rotational Parts,' International Journal of Production Research, 29 : 1771-1784, 1991 https://doi.org/10.1080/00207549108948048
  11. Kusiak, A. and Chow, W. S.; 'Efficient Solving of the Group Technology Problem,' Journal of Manufacturing Systems, 6(2) : 117-124, 2002 https://doi.org/10.1016/0278-6125(87)90035-5
  12. Kusiak, A.; 'The Generalized Group Technology Concept,' International Journal of Production Research, 28 : 185-198, 1987 https://doi.org/10.1080/00207549008942692
  13. Venegopal, V. and Narendran T. T.; 'Cell Formation in Manufacturing Systems through Simulated Annealing: an Experimental Evaluation,' European Journal of Operational Research, 63 : 409-422, 1992 https://doi.org/10.1016/0377-2217(92)90158-6
  14. Viswannathan, S.; 'A New Approach for Solving the p-median problem in Group Technology,' International Journal of Production Research, 34 : 2691-2700, 1996 https://doi.org/10.1080/00207549608905053
  15. Won, S.; 'Two-phase Approach to GT Cell Formation using Efficient p-medi an Formations,' International Journal of Production Research, 38(7) : 1601-1613, 2000 https://doi.org/10.1080/002075400188744