Paper
1 September 2015 Rapid three-dimensional chromoscan system of body surface based on digital fringe projection
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Abstract
This paper proposes a rapid body scanning system that uses optical digital fringe projection method. Twelve cameras and four digital projectors are placed around the human body from four different directions, so that the body surface threedimensional( 3D) point cloud data can be scanned in 5~8 seconds. It can overcome many difficulties in a traditional measurement method, such as laser scanning causes damage to human eye and low splicing accuracy using structured white light scanning system. First, an accurate calibration method based on close-range photogrammetry, is proposed and verified for calibrating the twelve cameras and the four digital projectors simultaneously, where a 1m×2m plate as calibration target with feature points pasted on its two-sides is used. An experiment indicates that the proposed calibration method, with a re-projection error less than 0.05pixels, has a considerable accuracy. The whole 3D body surface color point cloud data can be measured without splice different views of point cloud, because of the high accuracy calibration results. Then, in order to measure the whole body point cloud data with high accuracy, a combination of single and stereo camera measuring method, based on digital fringe projection, has presented to calculating 3D point cloud data. At last, a novel body chromoscan system is developed and a human body 3D digital model was scanned, by which a physical body model was manufactured using 3D printing technology.
© (2015) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Bin Wei, Jin Liang, Jie Li, and Maodong Ren "Rapid three-dimensional chromoscan system of body surface based on digital fringe projection", Proc. SPIE 9576, Applied Advanced Optical Metrology Solutions, 95760P (1 September 2015); https://doi.org/10.1117/12.2187343
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Cited by 1 scholarly publication.
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KEYWORDS
Clouds

Calibration

Projection systems

Cameras

3D modeling

3D acquisition

3D image reconstruction

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