DocumentCode
2847816
Title
System and algorithms for an autonomous observatory assisting the search for the Ivory-Billed Woodpecker
Author
Song, Dezhen ; Qin, Ni ; Xu, Yiliang ; Kim, Chang Young ; Luneau, David ; Goldberg, Ken
Author_Institution
Dept. of Comput. Sci., Texas A&M Univ., College Station, TX
fYear
2008
fDate
23-26 Aug. 2008
Firstpage
200
Lastpage
205
Abstract
Ornithologists, conservationists, and millions of birdwatchers consider the Ivory-Billed Woodpecker (IBWO) the dasiaHoly Grail of Birds.psila There have been hundreds of reports of sightings of this magnificent bird but no conclusive photo has been recorded since 1948. Under our broader research effort to develop networked autonomous ldquoobservatoriesrdquo for natural environments, we have been working with the Cornell University researchers who have led a massive search initiated by eyewitness reports and low resolution video captured in the Cache River National Wildlife Refuge of Arkansas. In this paper we describe the two-camera autonomous observatory system we designed and installed in Arkansas that continuously scans the sky, recording high resolution video of candidate birds. We report on hardware, software, and algorithms based on 15 months of field experiments. Our image processing algorithm combines size filtering, nonparametric motion filtering, and temporal difference filtering to detect flying birds. Initial results suggest that we have met our four design goals: sensitivity, data reduction, accuracy, and robustness. Video segments with several bird species have been conclusively identified, video data has been consistently reduced by 99.9953%, the system is able to capture birds flying at a speed of up to 60km per hour with low false negative rates, and the system has held up to harsh field conditions. For latest updates and samples of video, please see http://www.c-o-n-e.org/acone/.
Keywords
image recognition; image segmentation; video signal processing; video surveillance; zoology; Ivory-Billed Woodpecker; autonomous observatory; data reduction; flying birds; image processing algorithm; two-camera autonomous observatory system; video segments; Birds; Filtering algorithms; Hardware; Image processing; Motion detection; Observatories; Rivers; Software algorithms; Video recording; Wildlife;
fLanguage
English
Publisher
ieee
Conference_Titel
Automation Science and Engineering, 2008. CASE 2008. IEEE International Conference on
Conference_Location
Arlington, VA
Print_ISBN
978-1-4244-2022-3
Electronic_ISBN
978-1-4244-2023-0
Type
conf
DOI
10.1109/COASE.2008.4626472
Filename
4626472
Link To Document