DOAJ Open Access 2024

A Novel Approach for As-Built BIM Updating Using Inertial Measurement Unit and Mobile Laser Scanner

Yuchen Yang Yung-Tsang Chen Craig Hancock Nicholas A. S. Hamm Zhiang Zhang

Abstrak

Building Information Modeling (BIM) has recently been widely applied in the Architecture, Engineering, and Construction Industry (AEC). BIM graphical information can provide a more intuitive display of the building and its contents. However, during the Operation and Maintenance (O&M) stage of the building lifecycle, changes may occur in the building’s contents and cause inaccuracies in the BIM model, which could lead to inappropriate decisions. This study aims to address this issue by proposing a novel approach to creating 3D point clouds for updating as-built BIM models. The proposed approach is based on Pedestrian Dead Reckoning (PDR) for an Inertial Measurement Unit (IMU) integrated with a Mobile Laser Scanner (MLS) to create room-based 3D point clouds. Unlike conventional methods previously undertaken where a Terrestrial Laser Scanner (TLS) is used, the proposed approach utilizes low-cost MLS in combination with IMU to replace the TLS for indoor scanning. The approach eliminates the process of selecting scanning points and leveling of the TLS, enabling a more efficient and cost-effective creation of the point clouds. Scanning of three buildings with varying sizes and shapes was conducted. The results indicated that the proposed approach created room-based 3D point clouds with centimeter-level accuracy; it also proved to be more efficient than the TLS in updating the BIM models.

Topik & Kata Kunci

Penulis (5)

Y

Yuchen Yang

Y

Yung-Tsang Chen

C

Craig Hancock

N

Nicholas A. S. Hamm

Z

Zhiang Zhang

Format Sitasi

Yang, Y., Chen, Y., Hancock, C., Hamm, N.A.S., Zhang, Z. (2024). A Novel Approach for As-Built BIM Updating Using Inertial Measurement Unit and Mobile Laser Scanner. https://doi.org/10.3390/rs16152743

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Informasi Jurnal
Tahun Terbit
2024
Sumber Database
DOAJ
DOI
10.3390/rs16152743
Akses
Open Access ✓