Semantic enrichment for BIM: Enabling technologies and applications

被引:30
作者
Jiang, Shaohua [1 ]
Feng, Xue [1 ]
Zhang, Bo [1 ]
Shi, Jingting [1 ]
机构
[1] Dalian Univ Technol, Dept Construct Management, Dalian, Peoples R China
基金
中国国家自然科学基金;
关键词
BIM; Semantic enrichment; Semantic web; Rule -based reasoning; 3D BUILDING MODELS; AUTOMATIC-GENERATION; QUERY LANGUAGE; MANAGEMENT; INTEROPERABILITY; INSPECTION; INDUSTRY; ELEMENTS; SYSTEM; SAFETY;
D O I
10.1016/j.aei.2023.101961
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
There is a serious information gap between different life-cycle stages and different BIM platforms, semantic enrichment (SE) for BIM is an important solution to address this issue. Therefore, semantically rich BIM models are of great significance for efficient construction management and BIM is facing higher semantic requirements. It is necessary to conduct SE for BIM according to the requirements of specific domains. There is still a lack of in-depth analysis and summary of the content, methods, and applications of SE for BIM in different stages during the life cycle of facilities, therefore this paper gives a comprehensive review of SE for BIM to analyze the status quo and trends from content, methods, and applications. The content and four methods of SE for BIM are summa-rized. The pros, cons, and applicability of each method are analyzed. Applications of SE for BIM in the life cycle of facilities are discussed comprehensively. Finally, this paper discusses the enabling technologies, Level of Development (LOD) and SE for BIM, and presents research gaps and future directions.
引用
收藏
页数:16
相关论文
共 131 条
[31]   Automated digital modeling of existing buildings: A review of visual object recognition methods [J].
Czerniawski, Thomas ;
Leite, Fernanda .
AUTOMATION IN CONSTRUCTION, 2020, 113
[32]   Processing of Topological BIM Queries using Boundary Representation Based Methods [J].
Daum, Simon ;
Borrmann, Andre .
ADVANCED ENGINEERING INFORMATICS, 2014, 28 (04) :272-286
[33]   Building Information Modeling (BIM) application framework: The process of expanding from 3D to computable nD [J].
Ding, Lieyun ;
Zhou, Ying ;
Akinci, Burcu .
AUTOMATION IN CONSTRUCTION, 2014, 46 :82-93
[34]   BIM and Semantic Enrichment Methods and Applications: A Review of Recent Developments [J].
Dinis, Fabio Matoseiro ;
Pocas Martins, Joao ;
Guimaraes, Ana Sofia ;
Rangel, Barbara .
ARCHIVES OF COMPUTATIONAL METHODS IN ENGINEERING, 2022, 29 (02) :879-895
[35]   Automatic rule-based checking of building designs [J].
Eastman, C. ;
Lee, Jae-min ;
Jeong, Yeon-suk ;
Lee, Jin-kook .
AUTOMATION IN CONSTRUCTION, 2009, 18 (08) :1011-1033
[36]  
Eastman C.M.K., 2011, GUIDE BUILDING INFOR, DOI [10.1017/CBO9781107415324.004, DOI 10.1017/CBO9781107415324.004]
[37]  
Farias M.T., 2014, P RULEML 2014 CHALLE, V1211
[38]  
Ferguson M, 2019, COMPUTING IN CIVIL ENGINEERING 2019: VISUALIZATION, INFORMATION MODELING, AND SIMULATION, P303
[39]   Computational Geometric Approach for BIM Semantic Enrichment to Support Automated Underground Garage Compliance Checking [J].
Gao, Han ;
Zhong, Botao ;
Luo, Hanbin ;
Chen, Weiya .
JOURNAL OF CONSTRUCTION ENGINEERING AND MANAGEMENT, 2022, 148 (01)
[40]  
Garcia-Fernandez J, 2015, 2015 DIGITAL HERITAGE INTERNATIONAL CONGRESS, VOL 2: ANALYSIS & INTERPRETATION THEORY, METHODOLOGIES, PRESERVATION & STANDARDS DIGITAL HERITAGE PROJECTS & APPLICATIONS, P207, DOI 10.1109/DigitalHeritage.2015.7419495