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Autori principali: Vittori, Filippo, Tan, Chuan Fu, Pisello, Anna Laura, Chong, Adrian, Miller, Clayton
Natura: Preprint
Pubblicazione: 2023
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Accesso online:https://arxiv.org/abs/2307.13197
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author Vittori, Filippo
Tan, Chuan Fu
Pisello, Anna Laura
Chong, Adrian
Miller, Clayton
author_facet Vittori, Filippo
Tan, Chuan Fu
Pisello, Anna Laura
Chong, Adrian
Miller, Clayton
contents The holistic management of a building requires data from heterogeneous sources such as building management systems (BMS), Internet-of-Things (IoT) sensor networks, and building information models. Data interoperability is a key component to eliminate silos of information, and using semantic web technologies like the BRICK schema, an effort to standardize semantic descriptions of the physical, logical, and virtual assets in buildings and the relationships between them, is a suitable approach. However, current data integration processes can involve significant manual interventions. This paper presents a methodology to automatically collect, assemble, and integrate information from a building information model to a knowledge graph. The resulting application, called BIM-to-BRICK, is run on the SDE4 building located in Singapore. BIM-to-BRICK generated a bidirectional link between a BIM model of 932 instances and experimental data collected for 17 subjects into 458 BRICK objects and 1219 relationships in 17 seconds. The automation of this approach can be compared to traditional manual mapping of data types. This scientific innovation incentivizes the convergence of disparate data types and structures in built-environment applications.
format Preprint
id arxiv_https___arxiv_org_abs_2307_13197
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle BIM-to-BRICK: Using graph modeling for IoT/BMS and spatial semantic data interoperability within digital data models of buildings
Vittori, Filippo
Tan, Chuan Fu
Pisello, Anna Laura
Chong, Adrian
Miller, Clayton
Systems and Control
The holistic management of a building requires data from heterogeneous sources such as building management systems (BMS), Internet-of-Things (IoT) sensor networks, and building information models. Data interoperability is a key component to eliminate silos of information, and using semantic web technologies like the BRICK schema, an effort to standardize semantic descriptions of the physical, logical, and virtual assets in buildings and the relationships between them, is a suitable approach. However, current data integration processes can involve significant manual interventions. This paper presents a methodology to automatically collect, assemble, and integrate information from a building information model to a knowledge graph. The resulting application, called BIM-to-BRICK, is run on the SDE4 building located in Singapore. BIM-to-BRICK generated a bidirectional link between a BIM model of 932 instances and experimental data collected for 17 subjects into 458 BRICK objects and 1219 relationships in 17 seconds. The automation of this approach can be compared to traditional manual mapping of data types. This scientific innovation incentivizes the convergence of disparate data types and structures in built-environment applications.
title BIM-to-BRICK: Using graph modeling for IoT/BMS and spatial semantic data interoperability within digital data models of buildings
topic Systems and Control
url https://arxiv.org/abs/2307.13197