A linked-data paradigm for the integration of static and dynamic building data in Digital Twins

被引:21
作者
Mavrokapnidis, Dimitris [1 ]
Katsigarakis, Kyriakos [1 ]
Pauwels, Pieter [2 ]
Petrova, Ekaterina [2 ]
Korolija, Ivan [1 ]
Rovas, Dimitrios [1 ]
机构
[1] UCL, London, England
[2] Eindhoven Univ Technol, Eindhoven, Netherlands
来源
BUILDSYS'21: PROCEEDINGS OF THE 2021 ACM INTERNATIONAL CONFERENCE ON SYSTEMS FOR ENERGY-EFFICIENT BUILT ENVIRONMENTS | 2021年
基金
欧盟地平线“2020”;
关键词
Ontologies; Linked Data; Semantic Web Technologies; BOT; IFC; Brick; Metadata; OWL; RDF; Smart Buildings; Digital Twins; INDUSTRY;
D O I
10.1145/3486611.3491125
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Digital Twins is an emerging field of research, mainly because they span the entire building lifecycle promising to uncover hidden inefficiencies and deliver data-driven applications. Broadly defined as real-time digital representations of physical assets, Digital Twins require a connection between static and real-time data. However, building information is usually stored in different formats across the lifecycle, making data integration a challenging task. We hereby often rely on linked data technologies, yet overall system integration approaches with multiple types of data sources. In this work, a data linking methodology is proposed to combine static building design data from Industry Foundation Classes (IFC) and dynamic data using the Brick Schema; a domain ontology which configures data analytics applications during the operational phase. To facilitate this integration, we develop a tool to facilitate the linking of building topology, product, and sensor data using the two schemata. The implementation of our methodology in a real test case demonstrates its significance in combining diverse data sources which can be an important step for the delivery of Digital Twin applications.
引用
收藏
页码:369 / 372
页数:4
相关论文
共 12 条
[1]   Brick : Metadata schema for portable smart building applications [J].
Balaji, Bharathan ;
Bhattacharya, Arka ;
Fierro, Gabriel ;
Gao, Jingkun ;
Gluck, Joshua ;
Hong, Dezhi ;
Johansen, Aslak ;
Koh, Jason ;
Ploennigs, Joern ;
Agarwal, Yuvraj ;
Berges, Mario ;
Culler, David ;
Gupta, Rajesh K. ;
Kjaergaard, Mikkel Baun ;
Srivastava, Mani ;
Whitehouse, Kamin .
APPLIED ENERGY, 2018, 226 :1273-1292
[2]  
Bonduel M., 2018, The IFC to Linked Building Data Converter-Current Status
[3]   Shepherding Metadata Through the Building Lifecycle [J].
Fierro, Gabe ;
Prakash, Anand Krishnan ;
Mosiman, Cory ;
Pritoni, Marco ;
Raftery, Paul ;
Wetter, Michael ;
Culler, David E. .
PROCEEDINGS OF THE 7TH ACM INTERNATIONAL CONFERENCE ON SYSTEMS FOR ENERGY-EFFICIENT BUILDINGS, CITIES, AND TRANSPORTATION, BUILDSYS 2020, 2020, :70-79
[4]  
Finance Beatrice, 2020, REFERENCE ARCHITECTU
[5]  
Grieves M., 2014, White Paper, V1, P1
[6]   Automatic generation of second-level space boundary topology from IFC geometry inputs [J].
Lilis, Georgios N. ;
Giannakis, Georgios I. ;
Rovas, Dimitrios V. .
AUTOMATION IN CONSTRUCTION, 2017, 76 :108-124
[7]   Semantic web technologies in AEC industry: A literature overview [J].
Pauwels, Pieter ;
Zhang, Sijie ;
Lee, Yong-Cheol .
AUTOMATION IN CONSTRUCTION, 2017, 73 :145-165
[8]   EXPRESS to OWL for construction industry: Towards a recommendable and usable ifcOWL ontology [J].
Pauwels, Pieter ;
Terkaj, Walter .
AUTOMATION IN CONSTRUCTION, 2016, 63 :100-133
[9]  
Pritoni Marco, 2021, METADATA SCHEMAS ONT, V14, P1, DOI [10.3390/en14072024Energies, DOI 10.3390/EN14072024ENERGIES]
[10]   A case study comparing the completeness and expressiveness of two industry recognized ontologies [J].
Quinn, Caroline ;
McArthur, J. J. .
ADVANCED ENGINEERING INFORMATICS, 2021, 47