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Visual end-effector position error compensation for planetary roboticsThis paper describes a vision-guided manipulation algorithm that improves arm end-effector positioning to subpixel accuracy and meets the highly restrictive imaging and computational constraints of a planetary robotic flight system. Analytical, simulation-based, and experimental analyses of the algorithm's effectiveness and sensitivity to camera and arm model error is presented along with results on several prototype research systems and ground-in-the-loop technology experiments on the Mars Exploration Rover (MER) vehicles. A computationally efficient and robust subpixel end-effector fiducial detector that is instrumental to the algorithm's ability to achieve high accuracy is also described along with its validation results on MER data.
Document ID
20210002162
Acquisition Source
Jet Propulsion Laboratory
Document Type
Accepted Manuscript (Version with final changes)
External Source(s)
Authors
Nickels, Kevin
Backes, Paul
DiCicco, Matthew
Bajracharya, Max
Date Acquired
May 1, 2007
Publication Date
May 1, 2007
Publication Information
Publisher: Wiley Periodicals, Inc.
Distribution Limits
Public
Copyright
Other
Technical Review

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