DocumentCode
2538753
Title
Model-driven determination of object pose for a visually servoed robot
Author
Rutkowski, Wallace S. ; Benton, Ryan ; Kent, Ernest W.
Author_Institution
Lehigh University, Bethlehem, PA
Volume
4
fYear
1987
fDate
31837
Firstpage
1419
Lastpage
1428
Abstract
The National Bureau of Standards robot sensory system employs multiple hierarchical levels of sensory interpretation that interact with matching levels of world modeling. At each level, the world-modeling processes generate hypotheses about the sensory data based on a priori knowledge, prior sensory input, and knowledge of robot motion. The sensory-interpretative processes use these hypotheses to facilitate their analyses of new data. The results of the analyses are used by the world-modeling processes to correct their models of the environment. This interaction requires the development of real-time algorithms for the analysis of sensory data that can usefully employ guidance from models. This paper presents an algorithm for accomplishing this at the level of object location and pose determination. Its desirable features include the ability to deal with underconstrained problems, the ability to employ all the data in a structured-light image, and robustness in the face of several types of error and noise.
Keywords
Algorithm design and analysis; Cameras; Computer science; Data analysis; NIST; Noise robustness; Robot motion; Robot sensing systems; Robot vision systems; Visual servoing;
fLanguage
English
Publisher
ieee
Conference_Titel
Robotics and Automation. Proceedings. 1987 IEEE International Conference on
Type
conf
DOI
10.1109/ROBOT.1987.1087821
Filename
1087821
Link To Document