DOI QR코드

DOI QR Code

Development of Extended IFC Schema for BIM-based Korean Construction Standards Review

BIM 기반 국가건설기준 검토 수행을 위한 확장형 IFC 구조 개발

  • 석채현 (서울과학기술대학교 건설시스템공학과) ;
  • 정유정 (서울과학기술대학교 건설시스템공학과) ;
  • 유영수 (서울과학기술대학교 건설시스템공학과) ;
  • 구본상 (서울과학기술대학교 건설시스템공학과) ;
  • 류상훈 (한국건설기술연구원 국가건설기준센터)
  • Received : 2024.06.25
  • Accepted : 2024.06.25
  • Published : 2024.06.30

Abstract

IFC, a neutral standard data model for BIM, ensures data interoperability across BIM applications but struggles with adapting to diverse construction standards across countries and regions. In practice, the standard IFC schema does not include the entity and attribute information necessary for reviewing Korean Construction Standards. To overcome this, this study developed an extended IFC schema that incorporates design and construction standards data specifically for bridge. The extended IFC schema defines entities for representing types of bridges, structures, and elements, and Psets for containing relevant standards information. This schema is customized to be compatible with both Korean Design Standards (KDS) and Korean Construction Specifications (KCS). Additionally, based on the extended IFC schema, a specialized extension module was developed, capable of embedding design and construction standards data by element within IFC Physical File. Through this module, the necessary design and construction standards were inserted into specific elements.

Keywords

Acknowledgement

본 연구는 한국건설기술연구원 국가건설기준센터의 건설기준 개발사업의 일환인 "건설기준 디지털 전환을 위한 건설기준 라이브러리 및 온톨로지 구축·활용 기술개발 연구" 연구로 수행하였으며, 이에 감사드립니다.

References

  1. Borrmann, A., Amann, J., Chipman, T., Hyvarinen, J., Liebich, T., Muhic, S., Mol, L., Plume, J., Scarponcini, P. (2017). IFC Infra Overall Architecture Project Documentation and Guidelines, buildingSMART International (bSI). https://www.buildingsmart.org/wp-content/uploads/2017/07/0 8_bSI_OverallArchitecure_Guidelines_final.pdf (May. 01. 2024). 
  2. Borrmann, A., Muhic, S., Hyvarinen, J., Chipman, T., Jaud, S., Castaing, C., Dumoulin. C., Liebich. T., Mol. L. (2019). The IFC-Bridge Project-Extending the IFC Standard to Enable High-Quality Exchange of Bridge Information Models, Proceedings of the 2019 European Conference on Computing in Construction, 1, pp. 377-386. 
  3. Building and Construction Authority (BCA). (2023). CORNET X. (Report No. URA/PB/2023/01-DCG). https://www.corenet.gov.sg/media/2391818/appbca-2023-02.pdf (May. 01. 2024). 
  4. buildingSMART International (bSI). IFC Specifications Database. https://technical.buildingsmart.org/standards/ifc/ifcschema-specifications/ (May. 01. 2024). 
  5. Choi, J. W., Kim, J. Y., Im, M. I., Hwang, J. B., Chi, S. H. (2023). Development of a Construction Specification Digitalization Methodology for Smart Construction, Proceedings of KSCE 2023 Convention, pp. 303-304. 
  6. Eastman, C. (2011). BIM Handbook: A Guide to Building Information Modeling for Owners, Managers, Designers, Engineers and Contractors. John Wiley & Sons. 
  7. Jang, J. G., Seo, S. H., Lee, S. J., Zi, G. S. (2023). Digital Code Transformation for Establishment of Digital Utilization System, Proceedings of KSCE 2023 Convention, pp. 402-403. 
  8. Kwon, S. A., Jang, D. C., Kim, B. S. (2015). An Establishment and Direction of Operation of Korea Construction Standards Center, The Magazine of the Korean Society of Civil Engineers, 63(1), pp. 16-23. 
  9. Lee, S. H., Park, S. I., Kwon, T. H., Seo, K. W. (2017). Civil Infrastructure Information Modeling Method Based on Extended IFC Entities using BIM Authoring Software. Journal of the Computational Structural Engineering Institute of Korea, 30(1), pp. 77-86. 
  10. Liu, L., Li, B., Zlatanova, S., Oosterom, P.V. (2021). Indoor Navigation Supported by the Industry Foundation Classes (IFC): A survey, Automation in Construction, 121, pp. 1-20. 
  11. Ministry of Land, Infrastructure and Transport (2022). BIM Implementation Guidelines for the Construction Industry, https://www.molit.go.kr/USR/policyData/m_34681/dtl.jsp?id=4634 (Apr. 30. 2024). 
  12. Ministry of Land, Infrastructure and Transport. In the Future, Design Errors in Construction Projects will be Automatically Reviewed by Computers. https://www.molit.go.kr/USR/NEWS/m_71/dtl.jsp?lcmspage=1&id=95089150 (Apr. 30. 2024) 
  13. Park, E. W., Sung, W. K., Kang, D. J. (2022). Establishment of Bridge Design & Construction Process and Their Reference Map for Digitalization of Korea Construction Standards. Proceedings of KSCE 2022 Convention, pp. 84-85. 
  14. Park, S. I., Lee, S. H., Almasi, A., Song, J. H. (2020). Extended IFC-based Strong form Meshfree Collocation Analysis of a Bridge Structure, Automation in Construction, 119, pp. 1-21. 
  15. Solihin, W., Eastman, C., Lee, Y. C. (2015). Toward Robust and Quantifiable Automated IFC Quality Validation, Advanced Engineering Informatics, 29, pp. 739-756. 
  16. Son, S. W., Lee, G., Jung, J. E., Kim, J. D., Jeon, K. H. (2022). Automated Generation of a Model View Definition from an Information Delivery Manual using IdmXSD and buildingSMART Data Dictionary, Advanced Engineering Informatics, 54, pp. 1-13. 
  17. Won, J., Kim, T., Yu, J., Choo, S. (2022). Development of the IFC Schema Extension Methodology for Integrated BIM, Proceedings of eCAADe 2022 Conference, 2, pp. 339-346.