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NASA NTRS · 20210002162

Visual end-effector position error compensation for planetary robotics

Abstract

This 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.

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BibTeXRIS

Nickels, Kevin, Backes, Paul, DiCicco, Matthew, Bajracharya, Max. 2007-05-01. Visual end-effector position error compensation for planetary robotics. https://ntrs.nasa.gov/citations/20210002162

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