DocumentCode
3013760
Title
Wide-Area Egomotion Estimation from Known 3D Structure
Author
Koch, Olivier ; Teller, Seth
Author_Institution
MIT, Cambridge
fYear
2007
fDate
17-22 June 2007
Firstpage
1
Lastpage
8
Abstract
Robust egomotion recovery for extended camera excursions has long been a challenge for machine vision researchers. Existing algorithms handle spatially limited environments and tend to consume prohibitive computational resources with increasing excursion time and distance. We describe an egomotion estimation algorithm that takes as input a coarse 3D model of an environment, and an omnidirectional video sequence captured within the environment, and produces as output a reconstruction of the camera´s 6-DOF egomotion expressed in the coordinates of the input model. The principal novelty of our method is a robust matching algorithm that associates 2D edges from the video with 3D line segments from the input model. Our system handles 3-DOF and 6-DOF camera excursions of hundreds of meters within real, cluttered environments. It uses a novel prior visibility analysis to speed initialization and dramatically accelerate image-to-model matching. We demonstrate the method´s operation, and qualitatively and quantitatively evaluate its performance, on both synthetic and real image sequences.
Keywords
image sequences; motion estimation; 2D edges; 3D line segments; 3D model; 3D structure; extended camera excursions; image sequences; image-to-model matching; machine vision; omnidirectional video sequence; prohibitive computational resources; robust egomotion recovery; wide-area egomotion estimation; Acceleration; Artificial intelligence; Cameras; Computer science; Computer vision; Floors; Phase estimation; Robustness; Simultaneous localization and mapping; Solid modeling;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Vision and Pattern Recognition, 2007. CVPR '07. IEEE Conference on
Conference_Location
Minneapolis, MN
ISSN
1063-6919
Print_ISBN
1-4244-1179-3
Electronic_ISBN
1063-6919
Type
conf
DOI
10.1109/CVPR.2007.383027
Filename
4270052
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