DocumentCode :
3278367
Title :
Vision-based robust calibration for optical see-through head-mounted displays
Author :
Makibuchi, Naoya ; Kato, Haruhisa ; Yoneyama, A.
Author_Institution :
KDDI R&D Labs. Inc., Fujimino, Japan
fYear :
2013
fDate :
15-18 Sept. 2013
Firstpage :
2177
Lastpage :
2181
Abstract :
We propose Vision-based Robust Calibration (ViRC) method for OSTHMDs equipped with a camera. In the ViRC method, calibration parameters are decomposed into off-line parameters that remain constant relative to the positional relationship between the camera and the virtual screen, and on-line parameters related to the user´s eye. Calculating the off-line parameters beforehand reduces the number of unknown parameters in the on-line phase, giving robust protection against the user´s misalignments during calibration. In the off-line phase, the approximate position of the user´s eye is calculated using the PnP algorithm. In the online phase, the actual position of the user´s eye is estimated from the approximate one by non-linear minimization. In our experiments, we show that the ViRC method can decrease reprojection error by as much as 83% compared with the conventional method based on the DLT algorithm.
Keywords :
augmented reality; calibration; computer vision; helmet mounted displays; image sensors; DLT algorithm; OSTHMD; PnP algorithm; ViRC; approximate user eye position; camera; nonlinear minimization; off-line parameters; on-line parameters; optical see-through head-mounted displays; reprojection error; virtual screen; vision-based robust calibration; Augmented Reality; HMD Calibration; Optical See-Through Head-Mounted Display (OSTHMD);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Image Processing (ICIP), 2013 20th IEEE International Conference on
Conference_Location :
Melbourne, VIC
Type :
conf
DOI :
10.1109/ICIP.2013.6738449
Filename :
6738449
Link To Document :
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