DocumentCode
1484528
Title
A high-precision camera operation parameter measurement system and its application to image motion inferring
Author
Zheng, Wentao ; Shishikui, Yoshiaki ; Kanatsugu, Yasuaki ; Tanaka, Yutaka ; Yuyama, Ichiro
Author_Institution
NHK Sci. & Tech. Res. Labs., Tokyo, Japan
Volume
47
Issue
1
fYear
2001
fDate
3/1/2001 12:00:00 AM
Firstpage
46
Lastpage
55
Abstract
Information about camera operations such as zoom, focus, pan, tilt and dollying is significant not only for efficient video coding, but also for content-based video representation. In this paper we describe a high-precision camera operation parameter measurement system and apply it to image motion inferring. First, we outline the implemented system which is designed to provide camera operation parameters with a high precision required for image coding applications. Second, we calibrate the camera lens to determine its exact optical properties, A pin-hole camera model with the 2nd order radial lens distortion and a two-image calibration technique are employed. Finally, we use the pan, tilt and zoom parameters measured by the system to infer image motion. The experimental results show that the inferred motion coincides with the actual motion very closely. Compared to the motion analysis techniques that estimate camera motion from video sequences, our approach does not suffer from ambiguity, thus can provide reliable and accurate image global motion. The obtained motion can be applied to image mosaicing, moving object segmentation, object-based image coding, etc
Keywords
calibration; image representation; lenses; motion estimation; video cameras; video coding; 2nd order radial lens distortion; camera lens; camera operation parameters; content-based video representation; dollying; focus; high-precision camera operation parameter measurement system; image global motion; image mosaicing; image motion inferring; moving object segmentation; object-based image coding; optical properties; pan; pin-hole camera model; tilt; two-image calibration technique; video coding; zoom; Calibration; Cameras; Distortion measurement; Focusing; Image coding; Lenses; Motion analysis; Motion measurement; Optical distortion; Video coding;
fLanguage
English
Journal_Title
Broadcasting, IEEE Transactions on
Publisher
ieee
ISSN
0018-9316
Type
jour
DOI
10.1109/11.920780
Filename
920780
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