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함정 획득시스템 개선을 위한 제품구조 중심의 기본설계시스템

Basic Design System Centered on Product Structure for Improvement of Naval Ship Acquisition Systems

  • 오대균 (목포해양대학교 해양시스템공학부) ;
  • 민영기 (방위사업청 함정사업부)
  • Oh, Dae-Kyun (Division of Ocean System Engineering, Mokpo National Maritime University) ;
  • Min, Young-Ki (Vessels Programs Bureau, Defense Acquisition Program Administration)
  • 투고 : 2010.12.14
  • 심사 : 2011.03.10
  • 발행 : 2011.06.20

초록

To improve the naval ship acquisition process, systems engineering, modeling and simulation, etc. have been introduced, and there has been ongoing research on acquisition systems for effective support of it. However, due to characteristics of the naval ship acquisition process, development process mainly carried out at a shipyard such as basic design, detailed design, construction and test is difficult to integrate with the acquisition systems of IPT(Integrated Project Team). In addition, research aimed to improve this is rather lacking. In this paper, the naval ship product structure concept proposed in previous research was applied to the basic design system at shipyard, and basic research for expanding the coverage of naval ship acquisition systems to the basic design phase is performed. A data structure of modeling system appropriate to the basic design phase was proposed through research findings and the prototype system based on it was implemented.

키워드

참고문헌

  1. Dassault Systems, 2008. ENOVIA LCA Engineering Hub Student Guide. Dassault Systems Official Courseware.
  2. DoD, 1998. DoD Integrated Product and Process Development Handbook. Office of the Under Secretary of Defense, U.S..
  3. Jeong, Y.H., 2010. An Integrated Framework of Systems Engineering and Modeling & Simulation for Simulation-Based Acquisition of a Submarine. Ph.D. Dissertation, Seoul National University
  4. Jeong, Y.H. & Lew, J.M., 2007. IPDE(Integrated Product Data Environment) Implementation Method for the Application of Naval Ship PLM(Product Lifecycle Management). Journal of the Society of Naval Architects of Korea, 44(6), pp. 698-709.
  5. Jeong, Y.H. & Shin, J.G., 2009. Warship Design based on Systems Engineering. Naval Ship Technology Seminar on The Society of Naval Architects of Korea, Pusan, Republic of Korea.
  6. Jun, S.P. Oh, D.K. Noh, J.K. Jeong, Y.H. & Shin, J.G., 2008. A Proposal of Concept Exploration Process using Systems Engineering in Feasibility Study for Warship Acquisition. The Annual Meeting on The Society of CAD/CAM Engineers of Korea, Pyungchang, Republic of Korea, 31 January-1 February.
  7. Lee, C.M. Lee, H.J. Hwang, H.K. & Mun, D.H., 2007. Study on the use of modeling and simulation(M&S) to support the acquisition of naval ships. Workshop of the Society of CAD/CAM Engineers of Korea, Seoul, Republic of Korea, 23 August.
  8. Oh, D.K., 2008. A Naval Ship Product Model and its Management System supporting Simulation-Based Acquisition for Naval Ships. Ph.D. Dissertation, Seoul National University.
  9. Oh, D.K., Jeong, Y.H., Kim, Y.G., Shin, J.G., Jeong, Y.H. & Ryu, C.H., 2008. Development of Product Model Management System for Naval Shipbuilding. Journal of Ship Production, 24(2), pp.82-91.
  10. Oh, D.K. Kim, Y.G. Jeong, Y.H. & Shin. J.G., 2007. IPDE(Integrated Product Data Environment) Implementation for Korea Warship PLM, Workshop of the Society of CAD/CAM Engineers of Korea, Seoul, Republic of Korea, 23 August.
  11. Oh, D.K. & Shin, J.G., 2009. Framework for an Advanced Naval Ships Acquisition based on PLM. Journal of the Society of Naval Architects of Korea, 46(2), pp.189-202. https://doi.org/10.3744/SNAK.2009.46.2.189
  12. RIMSE(Research Institute of Marine Systems Engineering, Seoul National University), 2003. Prototype of the Naval Ship Information Management System. RIMSE, Seoul National University.
  13. R.O.K. Navy, 2007. SWBS STANDARDS(Standards of Ship Work Breakdown Structure). Naval Warfare Development Group, R.O.K. Navy.
  14. R.O.K. Navy, 2009. Criteria for Digital Data Acquisition. Vessels Programs Bureau, DAPA(Defense Acquisition Program Administration).
  15. Song, J.T., 2006. Applications and Results of IPPD in U.S. Navy Submarine Development. Defense Science & Technology Plus Vol. 9., ADD.