DocumentCode
344068
Title
Correlation-based estimation of ego-motion and structure from motion and stereo
Author
Mandelbaum, R. ; Salgian, G. ; Sawhney, H.
Author_Institution
Sarnoff Corp., Princeton, NJ, USA
Volume
1
fYear
1999
fDate
1999
Firstpage
544
Abstract
This paper describes a correlation-based, iterative, multi-resolution algorithm which estimates both scene structure and the motion of the camera rig through an environment from the stream(s) of incoming images. Both single-camera rigs and multiple-camera rigs can be accommodated. The use of multiple synchronized cameras results in more rapid convergence of the iterative approach. The algorithm uses a global ego-motion constraint to refine estimates of inter-frame camera rotation and translation. It uses local window-based correlation to refine the current estimate of scene structure. All analysis is performed at multiple resolutions. In order to combine, in a straightforward way, the correlation surfaces from multiple viewpoints and from multiple pixels in a support region, each pixel´s correlation surface is modeled as a quadratic. This parameterization allows direct, explicit computation of incremental refinements for ego-motion and structure using linear algebra. Batches can be of arbitrary size, allowing a trade-off between accuracy and latency. Batches can also be daisy-chained for extended sequences. Results of the algorithm are shown on synthetic and real outdoor image sequences
Keywords
image sequences; linear algebra; motion estimation; correlation-based estimation; egomotion; image sequences; multiple-camera rigs; parameterization; scene structure; stereo image processing; structure from motion; Cameras; Convergence; Delay; Iterative algorithms; Iterative methods; Layout; Linear algebra; Motion estimation; Performance analysis; Streaming media;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Vision, 1999. The Proceedings of the Seventh IEEE International Conference on
Conference_Location
Kerkyra
Print_ISBN
0-7695-0164-8
Type
conf
DOI
10.1109/ICCV.1999.791270
Filename
791270
Link To Document