Title
A Calibration Method for a Self-Rotating, Linear-Structured-Light Scanning, Three-Dimensional Reconstruction System Based on Plane Constraints
Abstract
This paper proposes a calibration method for a self-rotating, linear-structured-light (LSL) scanning, three-dimensional reconstruction system based on plane constraints. The point cloud of plane target collected by the self-rotating, LSL scanning, 3D reconstruction system should be constrained to the basic principle of the plane equation; it can quickly and accurately calibrate the position parameters between the coordinate system of the LSL module and the coordinate system of the self-rotating, LSL scanning, 3D reconstruction system. Additionally, the transformation equation could be established with the calibrated optimal position parameters. This paper obtains the above-mentioned position parameters through experiments and uses the calibrated self-rotating, LSL scanning, 3D reconstruction system to perform three-dimensional scanning and reconstruction of the test piece. The experimental results show that the calibration method can effectively improve the measurement accuracy of the system.
Year
DOI
Venue
2021
10.3390/s21248359
SENSORS
Keywords
DocType
Volume
linear-structured light, three-dimensional reconstruction, rotation center, calibration
Journal
21
Issue
ISSN
Citations 
24
1424-8220
0
PageRank 
References 
Authors
0.34
0
8
Name
Order
Citations
PageRank
Jianping Zhao100.34
Yong Cheng200.34
Gen Cai300.34
Shengbo He400.34
Libing Liao500.34
Guoqiang Wu600.34
Li Yang700.34
Chang Feng800.34