Browse > Article
http://dx.doi.org/10.12672/ksis.2013.21.4.025

A Study on BIM-based Facility Management System Architecture Development considering the heterogeneous solution data integration  

Kang, Tae Wook (ICT Lab, Korea Institute of Construction Technology)
Choi, Hyun Sang (ICT Lab, Korea Institute of Construction Technology)
Publication Information
Abstract
The purpose of this study is to develop an efficient BIM-based FM(Facility Management) system architecture to integrate the heterogeneous solution data related to FM. The heterogeneous solution data can be an FM system, asset management system, or facility sensor database systems, as well as files created by a modeler. In this study, we define the consideration for the external heterogeneous data integration related to BIM-based FM and propose the methodology. To implement it, trends in related studies were reviewed and general use cases of BIM-based FM were derived to develop the architecture for the integration between BIM and the heterogeneous solution data. The component architecture was designed to implement the use cases, and the schema was developed for the prototype by using the proposed architecture.
Keywords
BIM; FM; integration; interoperability; architecture;
Citations & Related Records
Times Cited By KSCI : 4  (Citation Analysis)
연도 인용수 순위
1 Korea Institute of Construction Technology. 2013, Development of Building Information Modeling Based Facility Management System of KICT.
2 Lim, J. I; Kim, J. W; Kwon, H. D; Yoon, S. W; Kwon, S. W; Chin, S. Y. 2008.6, IFC test between commercial 3D CAD application using IFC, Korea Institute of Construction Engineering and Management, 9(3).   과학기술학회마을
3 Lim, H. S. 2011.7, BIM-based Mobile System for Facility Operation Improvement, Yonsei University.
4 Park, M. K. 2011.8, Using BIM technology in facility maintenance management system development, Pusan National University.
5 Saurabh T; Asli A; Burcu A; James G; Lucio S, E; William E. 2010, Analysis of three indoor localization technologies to support facility management field activities, Proceeding of the international Conference on Computing in Civil and Building Engineering.
6 Vanlande, R; Nicolle, C; Cruz, C. 2008.12, IFC and building lifecycle management, Automation in Construction, 18(1):70-78.   DOI   ScienceOn
7 Hwang, J. R; Kang, T. W; Hong, C. H; A Study on The Correlation Analysis Between IFC and CityGML for Efficient Utilization of Construction Data and GIS Data, Korea Spatial Information Society, 20(5):49-56.   과학기술학회마을   DOI   ScienceOn
8 An, H. K; Lee, S. K; Yu, J. H; Jang, H. S; Son, B. S. 2012, Information Requirements Analysis for BIM-based Facility Management Systems, Architectural Institute of Korea, 28(11):133-142.   과학기술학회마을
9 Gokce, H. U; Gokce, K. U. 2012, Multi dimensional energy management and optimization system for energy efficient building operations, University of Alberta, Department of Civil & Environmental Engineering, Markin/CNRLNatural Resources Engineering Facility 9105, 116th St Edmonton, Alberta, Canada.
10 Hao, Q; Xue, Y; Shen, W; Jones, B; Zhu, J. 2010, A Decision Support System for Integrating Corrective Maintenance, Preventive Maintenance, and Condition-Based Maintenance. Construction Research Congress, 470-479.
11 Kang, T. W; Hong, C. H; Hwang, J. R; Choi, H. S. 2012, The External BIM Reference Model Suggestion for Interoperability Between BIM and GIS, Korea Spatial Information Society, 20(5):91-98.   과학기술학회마을   DOI   ScienceOn
12 Ko, Y. H. 2008, A Study on the Development of a BIM-Based Building Process of CAFM Basic Data, Seoul National University of Technology.
13 Konstantin K; Carol A. G; Alex Z. 2003, Statistical tools for regional data analysis using FM, Proceedings of the ACM International Symposium on Advances in FM, 41-48.