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Ship Outfitting Design Data Exchange between CAD Systems Using Different Primitive Set

서로 다른 프리미티브 집합을 사용하는 CAD 시스템 사이에 선박 의장 설계 데이터의 교환

  • Lee, Seunghoon (Department of Mechanical Engineering, Korea Advanced Institute of Science) ;
  • Han, Soonhung (Department of Ocean Systems Engineering, Korea Advanced Institute of Science)
  • 이승훈 (한국과학기술원 기계공학과) ;
  • 한순흥 (한국과학기술원 해양시스템공학과)
  • Received : 2012.01.18
  • Accepted : 2013.05.09
  • Published : 2013.06.01

Abstract

Different CAD systems are used in ship outfitting design on different usage and purpose. Therefore, data exchanges between CAD systems are required from different formats. For data exchange, boundary representation standard formats such as IGES and ISO 10303 (STEP) are widely used. However, they present only B-rep representation. Because of different CAD systems have their own geometry format, data exchanges with design intend are difficult. Especially, Tribon and PDMS use primitives for express their geometry in ship outfitting design. However, Tribon primitives are represented their parameter by values that are non-parametric. Therefore, data size of catalogue library is bigger than different CAD system using parametric primitive representation. And that system has difficulty on data reprocessing. To solve that problem, we discuss about shape DB which contains design parameters of primitive for exchange Tribon primitives. And geometry data exchange between Tribon and Shape Database that defines based on PDMS scheme are specified using primitive mapping that can represent design intend.

Keywords

References

  1. Tribon, http://www.aveva.com/news_content.php?_id=80
  2. PDMS(Plant design management system), http://www.aveva.com/products_services_aveva_plant_pdms.php
  3. Owen, J., 1997, STEP: An Introduction, 2edition, Information Geometers.
  4. Mun, D., Han, S., Kim, J. and Oh, Y., 2003, A Set of Standard Modeling Commands for the History-based Paramertic Approach, Computer-Aided Design, 35(13), pp.1171-1179. https://doi.org/10.1016/S0010-4485(03)00022-8
  5. Mun, D.W. and Han, S.H., 2001, Exchange of CAD Models Using Macro Parametric Approach, Transactions of the Society of CAD/CAM Engineers, 6(4), pp.254-262.
  6. Mun, D.W., Kim, B. and Han, S.H., 2002, A Hybrid Parametric Translator Using the Feature Tree and the Macro File, Transactions of the Society of CAD/CAM Engineers, 7(4), pp.240-247.
  7. Choi, G., Mun, D. and Han, S., 2002, Exchange of CAD Part Models Based on the Macro-Parametric Approach, International Journal of CAD/CAM, 2(1), pp.13-21.
  8. Mun, D., Han, S., Kim, J. and Oh, Y., 2003, A Set of Standard Modeling Commands for the History-Based Parametric Approach, Computer-Aided Design, 35(13), pp.1171-1179. https://doi.org/10.1016/S0010-4485(03)00022-8
  9. Hwang, H., Lee, H. and Han, S., 2004, Digital Exchange of Design Models betweeN Marine Equipment Libraries Using Hybrid Neutral Formats, Journal of Marine Science and Technology, 9(4), 182-189. https://doi.org/10.1007/s00773-004-0177-7
  10. Aldridge, B., 2004, XMpLant-integration and interoperability. http://support.aveva.com
  11. Cheon, S., Han, S., Lee, H., Hwang, H. and Kim, Y., 2005, Ship Design Data Management Based on STEP AP218. In: International Conference on Computer Applications in Shipbuilding (ICCAS), Busan, Korea.
  12. Li, J., Kim, I., Lee, S., Han, S., Lee, C., Cheon, S., Lee, W., An, K., Cho, G., Hwang, J. and Mun, D., 2010, Sharing Piping CAD Models of Ocean Plants based on International Standards, Journal of Marine Science and Technology, 16(1), pp.76-83.
  13. ISO, Industrial Automation Systems and Integration-integration of Life-cycle Data for Process Plants Including Oil and Gas Production Facilities - part3: Reference Data for Geometry and Topology, ISO/TS 15926-3, 2009.
  14. Kwon, S.J., Mun, D.W. and Han, S.H., A Visualization Approach of Plant's 3D Shape Data Represented by ISO 15926 Templates, 2013 Proceedings of the Society of CAD/CAM Conference, 109-112, 2013.