A Quantitative Investigation of the Effect of Scan Planning and Multi-Technology Fusion for Point Cloud Data Collection on Registration and Data Quality: A Case Study of Bond University’s Sustainable Building

Author:

Zhu Zicheng12ORCID,Chen Tianzhuo12,Rowlinson Steve23,Rusch Rosemarie12ORCID,Ruan Xianhu4

Affiliation:

1. Faculty of Society & Design, Bond University, Robina, Gold Coast 4226, Australia

2. Centre for Comparative Construction Research, Bond University, Robina, Gold Coast 4226, Australia

3. Department of Real Estate and Construction, The University of Hong Kong, Pokfulam, Hong Kong

4. School of Civil Engineering, Chongqing Jiaotong University, Chongqing 400074, China

Abstract

The construction industry requires comprehensive and accurate as-built information for a variety of applications, including building renovations, historic building preservation and structural health monitoring. Reality capture technology facilitates the recording of as-built information in the form of point clouds. However, the emerging development trends of scan planning and multi-technology fusion in point cloud acquisition methods have not been adequately addressed in research regarding their effects on point cloud registration quality and data quality in the built environment. This study aims to extensively investigate the impact of scan planning and multi-technology fusion on point cloud registration and data quality. Registration quality is evaluated using registration error (RE) and scan overlap rate (SOR), representing registration accuracy and registration coincidence rate, respectively. Conversely, data quality is assessed using point error (PE) and coverage rate (CR), which denote data accuracy and data completeness. Additionally, this study proposes a voxel centroid approach and the PCP rate to calculate and optimize the CR, tackling the industry’s challenge of quantifying point cloud completeness.

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

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