DOI QR코드

DOI QR Code

도로 건설현장의 디지털트윈 구현을 위한 디지털 건설정보구조에 관한 연구

A Study on the Digital Construction Information Structure for the Implementing Digital Twin of Road Construction Sites

  • 정태원 ((주)한맥기술 기술개발센터 ) ;
  • 지현욱 ((주)삼안 기술개발센터 ) ;
  • 복진훈 ((주)삼안 기술개발센터 )
  • Taewon Chung (Research and Development Center, Hanmac Engineering) ;
  • Hyon Wook Ji (Research and Development Center, Saman Corporation) ;
  • Jin Hoon Bok (Research and Development Center, Saman Corporation)
  • 투고 : 2023.09.06
  • 심사 : 2024.01.26
  • 발행 : 2024.02.28

초록

스마트건설을 위한 업무의 디지털화는 상호 간의 디지털데이터를 원활하게 교류할 수 있어야 효과가 있으나, 디지털데이터의 표준화 및 활용방안이 부족하다. 본 연구는 도로 건설현장의 정보를 효과적으로 디지털로 변환할 수 있는 디지털 건설정보구조를 제안한다. 연구대상은 도로건설업무에서 중요도가 높은 작업계획, 일정관리, 안전관리, 품질관리이다. 건설정보구조의 핵심은 건설정보를 객체와 작업으로 분리하고, 이 두 정보의 결합으로 단위업무를 정의함으로써 건설정보의 표현 및 수정의 유연성을 확보하는 것이다. 객체와 작업은 각자의 계층구조를 가지며, 이 계층구조는 실제 내용에 맞추어 가변형으로 정의하였다. 이는 효율성과 상세성을 동시에 만족하는 구조다. 이 구조를 고속도로 건설공사에 시범적용 하였고, 범용 포맷을 이용해 구조를 디지털로 구현하였다. 본 연구는 현실에 가깝게 도로 건설공사 과정을 디지털화할 수 있으며, 도로건설 전주기의 디지털트윈의 토대가 되어 토목산업의 디지털전환을 가속화 할 것이다.

The digitalization of tasks for smart construction requires the smooth exchange of digital data among stakeholders to be effective, but there is a lack of digital data standardization and utilization methods. This paper proposes a digital construction information structure to transform information from road construction sites into digital formats. The study targets include significant tasks, such as work planning, scheduling, safety management, and quality control. The key to the construction information structure is separating construction information into objects and activities, defining unit works by combining these two types of information to ensure flexibility in representing and modifying construction information. The objects and activities have their respective hierarchical structures, which are defined flexibly to match the actual content. This structure achieves both efficiency and detail. The pilot structure was applied to highway construction projects and implemented digitally using general formats. This study enables the digitalization of road construction processes that closely resemble reality, accelerating the digital transformation of the civil engineering industry by developing a digital twin of the entire road construction lifecycle.

키워드

과제정보

이 연구는 국토교통부/국토교통과학기술진흥원이 시행하고 한국도로공사가 총괄하는 "스마트건설기술개발 국가R&D사업(과제번호 RS-2020-KA156050)"의 지원으로 수행하였습니다.

참고문헌

  1. American Institute of Architects(1966), Uniform System for Construction Specifications, Data Filing and Cost Accounting, Title One, Buildings, American Institute of Architects, Washington DC, USA.
  2. Annex, A. and Rules, C.(2015), National BIM Standard-United States® version 3, Washington DC, USA.
  3. Boje, C., Guerriero, A., Kubicki, S. and Rezgui, Y.(2020), "Towards a semantic Construction Digital Twin: Directions for future research", Automation in Construction, vol. 114, 103179.
  4. Cerezo-Narvaez, A., Pastor-Fernandez, A., Otero-Mateo, M. and Ballesteros-Perez, P.(2020), "Integration of cost and work breakdown structures in the management of construction projects", Applied Sciences, vol. 10, no. 4, 1386.
  5. Cho, G. H., Ju, K. B. and Song, J. G.(2014), "Improvement of construction information classification for applying BIM", Journal of the Korea Academia-Industrial Cooperation Society, vol. 15, no. 10, pp.6379-6387. https://doi.org/10.5762/KAIS.2014.15.10.6379
  6. Construction Specifications Institute, Omniclass, https://www.csiresources.org/standards/omniclass, 2023.07.13.
  7. Heaton, J., Parlikad, A. K. and Schooling, J.(2019), "Design and Development of BIM Models to Support Operations and Maintenance", Computers in Industry, vol. 111, pp.172-186. https://doi.org/10.1016/j.compind.2019.08.001
  8. Institute for Science and Technology Strategy(2019), Final Report on Smart Construction Technology Development Project.
  9. Jung, Y., Kim, Y., Kim, M. and Ju, T.(2013), "Concept and structure of parametric object breakdown structure (OBS) for practical BIM", Korean Journal of Construction Engineering and Management, vol. 14, no. 3, pp.88-96. https://doi.org/10.6106/KJCEM.2013.14.3.088
  10. Kim, G., Lee, J., Kim, E. and Shin, Y.(2021), "A Study on Architecture for Building Smart Safety Management Systems Based on Construction site IoT", Journal of Korea Society of Information Technology Policy and Management(ITPM), vol. 13, pp.2305-2311.
  11. Kim, H. J., Jin, H. B., Youm, W. S., Kim, Y. G. and Park, K. H.(2019), "Intelligent Sensor Technology Trend for Smart IT Convergence Platform", Electronics and Telecommunications Trends, vol. 34, no. 5, pp.14-25. https://doi.org/10.22648/ETRI.2019.J.340502
  12. Korea Expressway Corporation(2020), Highway Smart Design Guidelines.
  13. Lee, J. H., Lee, S. W. and Kim, T. Y.(2019), "A development of unified and consistent BIM database for integrated use of BIM-based quantities, process, and construction costs in civil engineering", Journal of the Korea Society of Computer And Information, vol. 24, no. 2, pp.127-137. https://doi.org/10.9708/JKSCI.2019.24.02.127
  14. Lee, S. H., Park, S. I., Kwon, T. H. and 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, vol. 30, no. 1, pp.77-86. https://doi.org/10.7734/COSEIK.2017.30.1.77
  15. Lee, S. J. and Kwon, S. W.(2019), "A Study on the Application of Cyber Physical System and Digital Twin for Smart Construction", Proceedings of Korea Institute of Construction Engineering and Management, p.59.
  16. Ministry of Land, Infrastructure and Transport(2022), Strategies for Promoting Smart Construction.
  17. Moon, H. S. and Kang, L. S.(2009), "Development of VR Simulation Algorithm and System for Supporting Optimal Road Design Information", Korean Journal of Construction Engineering and Management, vol. 10, no. 4, pp.101-110.
  18. Nam, J. Y. and Jo, C. W.(2014), "Standardization of infrastructure information modeling based on BIM information framework", Korean Journal of Computational Design and Engineering, vol. 19, no. 3, pp.281-293. https://doi.org/10.7315/CADCAM.2014.281
  19. National Building Specification, Uniclass download, https://uniclass.thenbs.com/download, 2023.07.13.
  20. Qi, Q. and Tao, F.(2018), "Digital twin and big data towards smart manufacturing and industry 4.0: 360 degree comparison", IEEE Access, vol. 6, pp.3585-3593. https://doi.org/10.1109/ACCESS.2018.2793265
  21. Royano Garcia, V., Gibert Armengol, V., Serrat Pie, C. and Rapinski, J.(2023), "Analysis of classification systems for the built environment: Historical perspective, comprehensive review and discussion", Journal of Building Engineering, vol. 67, 105911.
  22. Yu, Y., Jeong, J., Jung, I., Yoon, H. and Lee, C.(2013), "Development of BIM-based work Process Model in construction Phase", Korean Journal of Construction Engineering and Management, vol. 14, no. 1, pp.133-143. https://doi.org/10.6106/KJCEM.2013.14.1.133