DocumentCode
1172366
Title
Near Real-Time Orthorectification and Mosaic of Small UAV Video Flow for Time-Critical Event Response
Author
Zhou, Guoqing
Author_Institution
Dept. of Civil Eng. & Technol., Old Dominion Univ., Norfolk, VA
Volume
47
Issue
3
fYear
2009
fDate
3/1/2009 12:00:00 AM
Firstpage
739
Lastpage
747
Abstract
A method for real-time mosaic of video flow acquired by a small low-cost unmanned aerial vehicle (UAV) has been presented in this paper. The basic procedures of real-time mosaic are as follows: (1) Each video frame is resampled and orthorectified using a developed mathematical model, which can simultaneously solve the video camera´s interior orientation parameters and the exterior orientation parameters of each video frame; (2) each orthorectified video frame is mosaicked at real time. A test field located in Picayune, Mississippi, has been established for testing our method. Sixty-minute video data were collected using the UAV and were processed using the proposed method. The results demonstrated that each video frame can be geo-orthorectified and mosaicked together to produce a 2-D planimetric mapping at near real time. Accuracy of the mosaicked video images (2-D planimetric map) is approximately 1-2 pixels, when compared to 55 checkpoints, which were measured by differential GPS surveying.
Keywords
Global Positioning System; geophysical signal processing; image segmentation; remote sensing by radar; remotely operated vehicles; terrain mapping; 2D planimetric mapping; Mississippi; Picayune; differential GPS surveying; image mosaic; near real time orthorectification; real time mosaic; small UAV video flow; time critical event response; unmanned aerial vehicle; Mathematical model; Monitoring; NASA; Pixel; Remote sensing; Spaceborne radar; Terrorism; Testing; Time factors; Unmanned aerial vehicles; Image flow; image processing; image registration; unmanned aerial vehicle (UAV);
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/TGRS.2008.2006505
Filename
4786583
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