DocumentCode :
2592709
Title :
Obstacle avoidance strategy based on adaptive potential fields generated by an electronic stick
Author :
Lopes, Ernesto P. ; Aude, Eliana P L ; Silveira, Julio T C ; Serdeira, Henrique
Author_Institution :
Inst. of Math., Fed. Univ. of Rio de Janeiro, Brazil
fYear :
2005
fDate :
2-6 Aug. 2005
Firstpage :
2626
Lastpage :
2631
Abstract :
In our previous work, an obstacle avoidance algorithm, which used potential fields and a similar strategy to that adopted by a blind person to avoid obstacles whilst walking, was proposed. The problem analyzed consists of an AGV (autonomous guided vehicle) which moves within an office environment with a known floor plan and uses an "electronic stick" made up of infrared sensors to detect unknown obstacles in its path. Initially, a global potential navigation function, defined for each room in the floor plan, incorporates information about the dimensions of the room and the position of the door which the AGV must use to leave the room. Whilst the AGV moves, this global potential navigation function is properly modified to incorporate information about any newly detected obstacle. The main interesting aspect of the proposed approach is that the potential function adaptation involves very low computational burden allowing for the use of ultra-fast AGVs. Other distinctive features of the algorithm are that it is free from local minima, the obstacles can have any shape, low cost sensors can be used to detect obstacles and an appropriate balance is achieved between the use of the global and the local approaches for collision avoidance. Our present work is a refinement of this strategy that allows for an automatic real time adaptation of the algorithm\´s parameters. Now, the algorithm\´s functioning requires only that the minimum distance at which the AGV can approach an obstacle (i.e. the closest it can get to any obstacle) is defined a priori. Aspects of the real implementation of the algorithm are also discussed.
Keywords :
adaptive signal processing; collision avoidance; mobile robots; navigation; object detection; adaptive potential fields; adaptive trajectory planning; autonomous guided vehicle; collision avoidance; electronic stick; floor plan; global potential navigation function; infrared sensors; obstacle avoidance; obstacle detection; office environment; real time adaptation; Costs; Infrared detectors; Infrared sensors; Legged locomotion; Mobile robots; Navigation; Remotely operated vehicles; Sensor phenomena and characterization; Shape; Vehicle detection; Obstacle avoidance; adaptive trajectory planning; autonomous guided vehicle; potential fields;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Robots and Systems, 2005. (IROS 2005). 2005 IEEE/RSJ International Conference on
Print_ISBN :
0-7803-8912-3
Type :
conf
DOI :
10.1109/IROS.2005.1544996
Filename :
1544996
Link To Document :
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