DocumentCode
2426901
Title
Real-time single-workstation obstacle avoidance using only wide-field flow divergence
Author
Camus, Ted ; Coombs, David ; Herman, Martin ; Hong, Tsai-Hong
Author_Institution
Intelligent Syst. Div., Nat. Inst. of Stand. & Technol., Gaithersburg, MD, USA
Volume
3
fYear
1996
fDate
25-29 Aug 1996
Firstpage
323
Abstract
A real-time robot vision system is described which uses only the divergence of the optical flow field for both steering control and collision detection. The robot has wandered about the lab at 20 cm/s for as long as 26 minutes without collision. The entire system is implemented on a single ordinary UNIX workstation without the benefit of real-time operating system support. Dense optical flow data are calculated in real-time across the entire wide-angle image. The divergence of this optical flow field is calculated everywhere and used to control steering and collision behavior. Divergence alone has proven sufficient for steering past objects and detecting imminent collision. The major contribution is the demonstration of a simple, robust, minimal system that uses flow-derived measures to control steering and speed to avoid collision in real time for extended periods. Such a system can be embedded in a general, multi-level perception/control system
Keywords
image sequences; mobile robots; navigation; object recognition; path planning; position control; real-time systems; robot vision; UNIX; collision detection; mobile robots; optical flow field; real-time system; robot vision system; single-workstation obstacle avoidance; steering control; wide-angle image; wide-field flow divergence; Control systems; Image motion analysis; Object detection; Operating systems; Optical control; Real time systems; Robot vision systems; Robust control; Velocity measurement; Workstations;
fLanguage
English
Publisher
ieee
Conference_Titel
Pattern Recognition, 1996., Proceedings of the 13th International Conference on
Conference_Location
Vienna
ISSN
1051-4651
Print_ISBN
0-8186-7282-X
Type
conf
DOI
10.1109/ICPR.1996.546964
Filename
546964
Link To Document