DocumentCode :
3295042
Title :
Self-calibration method of 3D measurement system with double cameras and 3-coding cycle triangular gray distribution structured light
Author :
Jianying Fan ; Linchao Liu ; Jing Bi ; Lina Shan ; Xiaomeng Cui ; Zimei Su ; Weitao Liang
Author_Institution :
Higher Educ. Key Lab. for Meas. & Control Technol. & Instrumentations of Heilongjiang Province, Harbin Univ. of Sci. & Technol., Harbin, China
Volume :
2
fYear :
2013
fDate :
June 28 2013-July 1 2013
Firstpage :
27
Lastpage :
31
Abstract :
This paper puts forward a new kind of structured light 3d measurement system self - Calibration method. At first, this paper sets the polar equation between the feature points on the calibration object and their corresponding points on two images. At second, the paper derives the translation and rotation relationship matrixes of the projector and each camera. Afterwards, projecting 3-coding cycle triangular gray distribution structured light patterns on the calibration object. From the images, the coordinates of the projector of the feature points can be acquired. Finally, the estimation matrix of the relationship matrix can be set based on the improved 8-point method. Using the epipolar distance as the objective function, the relationship matrixes will be optimized, and the parameter matrixes of the two cameras and the projector could be obtained. Making use of the calibrated system are carried out for a plane and a plaster statue respectively. The experimental result shows that the maximum absolute measurement error of the plane is less than 2.3mm and the reconstruction plaster statue surface is close to the target plaster statue. It proves that the 3d measurement system and the self-calibration method used by this paper is effective.
Keywords :
calibration; cameras; optical variables measurement; 3-coding cycle triangular gray distribution structured light pattern; 3D measurement system; double cameras; epipolar distance; polar equation; reconstruction plaster statue surface; self-calibration method; Encoding; Geometry; IP networks; Image coding; Imaging; Measurement uncertainty; 3-coding cycle; epipolar constraint; self-calibration; structured light;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Strategic Technology (IFOST), 2013 8th International Forum on
Conference_Location :
Ulaanbaatar
Print_ISBN :
978-1-4799-0931-5
Type :
conf
DOI :
10.1109/IFOST.2013.6616903
Filename :
6616903
Link To Document :
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