DocumentCode :
616772
Title :
Optical flow background subtraction for real-time PTZ camera object tracking
Author :
Doyle, Daniel D. ; Jennings, Alan L. ; Black, Jason T.
Author_Institution :
Dept. of Aeronaut. & Astronaut. Eng., Air Force Inst. of Technol., Wright-Patterson AFB, OH, USA
fYear :
2013
fDate :
6-9 May 2013
Firstpage :
866
Lastpage :
871
Abstract :
The use of pan/tilt/zoom (PTZ) camera systems with Computer Vision (CV) techniques is a burgeoning field. Utility is most commonly seen with security systems, robotics, navigation and for capturing sports events. This paper seeks to expand the use of PTZ´s in the area of measurement; specifically, the real-time tracking and measurement of Nano/Micro Unmanned Aircraft Systems (UAS). Empirical methods for developing various Nano/Micro UASs, typically ornithopter-related, show possibilities, but require theoretical development for continued understanding and advancements. The study of Nano/Micro UAS state characteristics would enable empirical development by providing supplementary model information for use in finite element and computational fluid dynamics analyses. One such advancement is to develop a metrology system using CV tracking coupled with videogrammetry techniques. The focus of this work is to provide a unique method for obtaining high-resolution, high frame-rate images of a UAS. A novel approach using a Graphics Processing Unit (GPU)-based pyramidal implementation of the Lucas-Kanade feature tracker (i.e. optical flow) to subtract PTZ movement is used to obtain motion measurements for directing the PTZ cameras.
Keywords :
autonomous aerial vehicles; cameras; computational fluid dynamics; computer vision; finite element analysis; object tracking; Lucas-Kanade feature tracker; computational fluid dynamics; computer vision techniques; finite element analysis; graphics processing unit; nano/micro unmanned aircraft systems; object tracking; optical flow background subtraction; pan/tilt/zoom camera systems; pyramidal implementation; real-time PTZ camera; Adaptive optics; Cameras; Linear approximation; Measurement by laser beam; Optical imaging; Real-time systems; PTZ camera; background subtraction; object tracking; optical flow;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Instrumentation and Measurement Technology Conference (I2MTC), 2013 IEEE International
Conference_Location :
Minneapolis, MN
ISSN :
1091-5281
Print_ISBN :
978-1-4673-4621-4
Type :
conf
DOI :
10.1109/I2MTC.2013.6555538
Filename :
6555538
Link To Document :
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