DocumentCode
2359
Title
Time-of-Flight Sensor Calibration for a Color and Depth Camera Pair
Author
Jiyoung Jung ; Joon-Young Lee ; Yekeun Jeong ; Kweon, In So
Author_Institution
Dept. of Electr. Eng., KAIST, Daejeon, South Korea
Volume
37
Issue
7
fYear
2015
fDate
July 1 2015
Firstpage
1501
Lastpage
1513
Abstract
We present a calibration method of a time-of-flight (ToF) sensor and a color camera pair to align the 3D measurements with the color image correctly. We have designed a 2.5D pattern board with irregularly placed holes to be accurately detected from low resolution depth images of a ToF camera as well as from high resolution color images. In order to improve the accuracy of the 3D measurements of a ToF camera, we propose to perform ray correction and range bias correction. We reset the transformation of the ToF sensor which transforms the radial distance into the scene depth in Cartesian coordinate through ray correction. Then we capture a planar scene from different depths to correct the distance error that is shown to be dependent not only on the distance but also on the pixel location. The range error profiles along the calibrated distance are classified according to their wiggling shapes and each cluster of profiles with similar shape are separately estimated using a B-spline function. The standard deviation of the remaining random noise is recorded as an uncertainty information of distance measurements. We show the performance of our calibration method quantitatively and qualitatively on various datasets, and validate the impact of our method by demonstrating an RGB-D shape refinement application.
Keywords
calibration; cameras; distance measurement; image colour analysis; image resolution; random noise; splines (mathematics); 2.5D pattern board; B-spline function; Cartesian coordinate; RGB-D shape refinement; ToF camera; ToF sensor; color camera; depth camera; distance error; distance measurements uncertainty information; high resolution color images; low resolution depth images; radial distance; random noise; range bias correction; range error profiles; ray correction; standard deviation; time-of-flight sensor calibration method; Calibration; Cameras; Color; Feature extraction; Image color analysis; Robot sensing systems; Three-dimensional displays; Kinect; Time-of-flight sensor calibration; color-depth camera fusion; time-of-flight range error analysis;
fLanguage
English
Journal_Title
Pattern Analysis and Machine Intelligence, IEEE Transactions on
Publisher
ieee
ISSN
0162-8828
Type
jour
DOI
10.1109/TPAMI.2014.2363827
Filename
6928464
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