DocumentCode
3006370
Title
Capturing multiple illumination conditions using time and color multiplexing
Author
De Decker, Bart ; Kautz, Jan ; Mertens, Tom ; Bekaert, Philippe
Author_Institution
Expertise Centre for Digital Media, Hasselt Univ., Hasselt, Belgium
fYear
2009
fDate
20-25 June 2009
Firstpage
2536
Lastpage
2543
Abstract
Many vision and graphics problems such as relighting, structured light scanning and photometric stereo, need images of a scene under a number of different illumination conditions. It is typically assumed that the scene is static. To extend such methods to dynamic scenes, dense optical flow can be used to register adjacent frames. This registration becomes inaccurate if the frame rate is too low with respect to the degree of movement in the scenes. We present a general method that extends time multiplexing with color multiplexing in order to better handle dynamic scenes. Our method allows for packing more illumination information into a single frame, thereby reducing the number of required frames over which optical flow must be computed. Moreover, color-multiplexed frames lend themselves better to reliably computing optical flow. We show that our method produces better results compared to time-multiplexing alone. We demonstrate its application to relighting, structured light scanning and photometric stereo in dynamic scenes.
Keywords
image colour analysis; image registration; image sequences; multiplexing; color multiplexing frame; computing optical flow; graphics problem; multiple illumination condition; photometric stereo; register adjacent frame; structured light scanning; time multiplexing; vision problem; Demultiplexing; Educational institutions; Graphics; Image motion analysis; Layout; Light sources; Lighting; Optical computing; Optical variables control; Photometry;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Vision and Pattern Recognition, 2009. CVPR 2009. IEEE Conference on
Conference_Location
Miami, FL
ISSN
1063-6919
Print_ISBN
978-1-4244-3992-8
Type
conf
DOI
10.1109/CVPR.2009.5206752
Filename
5206752
Link To Document