Title :
Volumetric calibration and registration of multiple RGBD-sensors into a joint coordinate system
Author :
Beck, Stephan ; Froehlich, Bernd
Author_Institution :
Virtual Reality & Visualization Res. Group, Bauhaus-Univ. Weimar, Weimar, Germany
Abstract :
We present an integrated approach for the calibration and registration of color and depth (RGBD) sensors into a joint coordinate system. Our application domain is 3D telepresence where users in front of a three-dimensional display need to be captured from all directions. The captured data is used to virtually reconstruct the group of people at a remote location. One key requirement of such applications is that contributions from different color and depth cameras match, as closely as possible, in spatially overlapping or adjacent regions. Our method employs a tracked checker-board to establish a number of correspondences between positions in color and depth camera space and in world space. These correspondences are used to construct a single calibration and registration volume per RGBD sensor which maps raw depth sensor values in a single step into a joint coordinate system and to their associated color values. This approach considerably reduces reconstruction latency by omitting expensive image rectification processes during runtime. Furthermore, our evaluation demonstrates a high measurement accuracy with an average 3D error below 3 mm and an average texture deviation smaller than 0.5 pixels for a space of about 1.5 m × 1.8 m × 1.5 m.
Keywords :
calibration; cameras; image colour analysis; image reconstruction; image registration; image sensors; three-dimensional displays; virtual reality; 3D telepresence; color camera; color sensor; depth camera; image rectification process; joint coordinate system; multiple RGBD-sensor registration; reconstruction latency reduction; three-dimensional display; tracked checker-board; volumetric calibration; Accuracy; Calibration; Cameras; Image color analysis; Interpolation; Sensors; Three-dimensional displays; 3D capturing; Kinect; Telepresence; camera calibration; depth camera; registration;
Conference_Titel :
3D User Interfaces (3DUI), 2015 IEEE Symposium on
Conference_Location :
Arles
DOI :
10.1109/3DUI.2015.7131731