DocumentCode
1694424
Title
Learning to acquire and select useful landmarks for route following
Author
Zingaretti, Primo ; Carbonaro, Antonella
Author_Institution
Istituto di Inf., Ancona Univ., Italy
fYear
1999
fDate
6/21/1905 12:00:00 AM
Firstpage
161
Lastpage
168
Abstract
The paper describes a prototypical system for optimal landmark acquisition and selection. Our landmark-learning approach does not require any type of environment model to be supplied to the robot in advance, and represents a step towards robots interacting with real environments. The approach is fitted and tested for the TMGA system (P. Zingaretti et al., 1998), which the authors developed for landmark tracking by adaptive, stereo template matching. Two complementary strategies, properly managed, are followed to construct a suitable subset of landmarks: the selection of the more discriminant landmarks and the selection of the landmarks that are more invariant in a neighbourhood. The robustness of the TMGA system in analysing the discriminant power of each landmark and the analysis of the disparity map and of the spatial activity maps of the stereo images are used for identifying discriminant and invariant landmarks. The experimental results show that the number of matching failures, and consequent landmark changes during the following of a route is comparable with (not much greater than) those obtained using an a-priori subset
Keywords
adaptive systems; computerised navigation; image matching; learning (artificial intelligence); mobile robots; robot vision; stereo image processing; tracking; TMGA system; a-priori subset; adaptive stereo template matching; complementary strategies; discriminant landmarks; discriminant power; disparity map; environment model; invariant landmarks; landmark changes; landmark tracking; landmark-learning approach; matching failures; optimal landmark acquisition; real environments; route following; spatial activity maps; stereo images; Adaptive systems; Computer science; Image analysis; Navigation; Power system management; Prototypes; Robots; Robustness; System testing; Uncertainty;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Mobile Robots, 1999. (Eurobot '99) 1999 Third European Workshop on
Conference_Location
Zurich
Print_ISBN
0-7803-5672-1
Type
conf
DOI
10.1109/EURBOT.1999.827636
Filename
827636
Link To Document