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Enterprise-BOM design for management speed-up in the automotive industry

자동차 산업의 경영 스피드 향상을 위한 Enterprise-BOM 구조 설계

  • Lim, Kyung-Soo (Department of Industrial & Management Engineering, Daegu University)
  • 임경수 (대구대학교 산업경영공학과)
  • Received : 2012.12.11
  • Accepted : 2013.03.07
  • Published : 2013.03.31

Abstract

Recently, as the product life cycle becomes shorter and customer needs becomes various, it has a great difficulty in managing the product information without the information technology. In this paper, we discuss how to classify numerous BOMs types and propose three categories-Structure-BOM, Display-BOM and Function-BOM for BOMs classification. Based on this result, we design the integrated BOMs management system with ERD(Entity-Relaion-Daiagram) model. This paper presented the methodology for management speed-up and communication innovation in the automotive industry, which incorporated the enterprise-wide product information. The proposed enterprise-BOM design methods also systemized the data related to automotive's principal attributes such as types of levels, options, colors, and consumers' orders. Efficient and flexible development of products can be achieved in the frequently varying environment of products.

제품수명주기가 짧아지고 고객의 니즈가 다양화되고 있는 글로벌 시장에서 보다 빠른 신제품 설계와 개발을 위해서는 정보시스템의 도움이 필요하다. 본 논문에서는 자동차산업의 경영 스피드 향상을 위한 방안으로 제품에 관한 정보를 전사적으로 통합하는 Enterprise-BOM의 기본모델을 제시하였다. 여기에는 세가지 BOM의 종류를 포함하며, 내부 주요 데이터 구조설계를 진행하여 전사 일원화 관리를 지원할 수 있도록 자동차 산업의 차종, 등급, 옵션, 색사양 주문 사양 등의 주요 속성에 대한 데이터를 체계화하였다. 이를 통해 사양변화와 개발변경이 빈번한 환경하에서 신속하고 유연성 있는 개발이 가능할 것이다.

Keywords

References

  1. K. J. Balcerak and B. G. Dale, "Structuring Modular Bills of Material With Usage Pattern Analysis", International Journal of Production Research., 130(2), pp. 283-298, 1992. DOI: http://dx.doi.org/10.1080/00207549208942895
  2. NISSAN NTC, NISSAN Auto mobil production control system, NISSAN NTC, 1995.
  3. H. J. BUullinger and J. Warshchat, "Concurrent Simultaneous Engineering Systems", Springer, pp7-8, ISBN 3-540-76003-2, 1995.
  4. H. M. H. Hegge and J. C. Wortmann, "Genetic Bill-of-Material: a New Product model", International Journal of Production Economics, 23, pp. 117-133, 1991. DOI: http://dx.doi.org/10.1016/0925-5273(91)90055-X
  5. A.-W. Scheer, "Business Process Engineering Reference Models for Industrial Enterprises", Springer-Verlag, pp. 92-120.
  6. K. A. Olsen, PerSaetre and Anders Thorstenson, "A Procedure-Oriented Generic Bill of Materials", Computers ind.Engng 32(1), pp. 29-30, 1997. https://doi.org/10.1016/S0360-8352(96)00058-7
  7. CIM data, Product Data Management: The Definition. "Bills of Material", American Production & Inventory Control Society's Tranning Aids, 1997.
  8. E. A. Vanveen and J. C.Wortmann, "New Developments in Generative BOM Processing System", Vol.3, No.3, pp. 327-336, 1992. https://doi.org/10.1080/09537289208919404
  9. L. Terry, and A, N. Susan, MRP: Intergrating Material Requirements Planning and Modern Business, Richard D. Irwin INC., 1992.
  10. Y. Chung and G. W. Fischer, "A Conceptual Structure and Isue for an Object Oriented Bill of Materials Data model", Computers Ind. Engng, 26(2), pp. 292-330, 1994. DOI: http://dx.doi.org/10.1016/0360-8352(94)90065-5
  11. H. Mather, "Bills of Materials", Dow Jones- Irwin,Homewood. IL., 1987.
  12. L. D. Smichil, P. Karminsky, and L. E. Smichil, Designing and Managing the Supply Chain, McGraw-Hill, 2000.

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