DocumentCode :
2604059
Title :
Scene flow by tracking in intensity and depth data
Author :
Quiroga, Julian ; Devernay, Frédéric ; Crowley, James
Author_Institution :
PRIMA team, INRIA Grenoble Rhone-Alpes, Montbonnot, France
fYear :
2012
fDate :
16-21 June 2012
Firstpage :
50
Lastpage :
57
Abstract :
The scene flow describes the motion of each 3D point between two times steps. With the arrival of new depth sensors, as the Microsfot Kinect, it is now possible to compute scene flow with a single camera, with promising repercussion in a wide range of computer vision scenarios. We propose a novel method to compute scene flow by tracking in a Lucas-Kanade framework. Scene flow is estimated using a pair of aligned intensity and depth images, but rather than computing a dense scene flow as in most previous methods, we get a set of 3D motion fields by tracking surface patches. Assuming a 3D local rigidity of the scene, we propose a rigid translation flow model that allows to solve directly for the scene flow by constraining the 3D motion field both in intensity and depth data. In our experimentation we achieve very encouraging results. Since this approach solves simultaneously for the 2D tracking and for the scene flow, it can be used for action recognition in existing 2D tracking based methods or to define scene flow descriptors.
Keywords :
cameras; computer vision; interactive devices; object recognition; object tracking; 2D tracking based methods; 3D point motion field; Lucas-Kanade framework; Microsfot Kinect; action recognition; computer vision scenarios; depth data; depth images; depth sensors; intensity data; intensity images; rigid translation flow model; scene flow computation; scene flow descriptors; single camera; surface patch tracking; Cameras; Optical imaging; Optical sensors; Solid modeling; Tracking; Vectors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Vision and Pattern Recognition Workshops (CVPRW), 2012 IEEE Computer Society Conference on
Conference_Location :
Providence, RI
ISSN :
2160-7508
Print_ISBN :
978-1-4673-1611-8
Electronic_ISBN :
2160-7508
Type :
conf
DOI :
10.1109/CVPRW.2012.6239237
Filename :
6239237
Link To Document :
بازگشت