DocumentCode
1547944
Title
Eye-in-hand robotic tasks in uncalibrated environments
Author
Smith, Christopher E. ; Brandt, Scott A. ; Papanikolopoulos, Nikolaos P.
Author_Institution
Dept. of Comput. Sci. & Eng., Colorado Univ., Denver, CO, USA
Volume
13
Issue
6
fYear
1997
fDate
12/1/1997 12:00:00 AM
Firstpage
903
Lastpage
914
Abstract
Flexible operation of a robotic agent in an uncalibrated environment requires the ability to recover unknown or partially known parameters of the workspace through sensing. Of the sensors available to a robotic agent, visual sensors provide information that is richer and more complete than other sensors. In this paper we present robust techniques for the derivation of depth from feature points on a target´s surface and for the accurate and high-speed tracking of moving targets. We use these techniques in a system that operates with little or no a priori knowledge of object- and camera-related parameters to robustly determine such object-related parameters as velocity and depth. Such determination of extrinsic environmental parameters is essential for performing higher level tasks such as inspection, exploration, tracking, grasping, and collision-free motion planning. For both applications, we use the Minnesota robotic visual tracker (MRVT) (a single visual sensor mounted on the end-effector of a robotic manipulator combined with a real-time vision system) to automatically select feature points on surfaces, to derive an estimate of the environmental parameter in question, and to supply a control vector based upon these estimates to guide the manipulator
Keywords
feature extraction; image sensors; manipulators; parameter estimation; robot vision; MRVT; Minnesota robotic visual tracker; camera-related parameters; collision-free motion planning; control vector; depth-from-feature-point recovery; exploration; extrinsic environmental parameters; eye-in-hand robotic tasks; grasping; inspection; moving target tracking; object-related parameters; parameter recovery; partially known parameters; real-time vision system; sensing; tracking; uncalibrated environments; unknown parameters; visual sensors; Inspection; Manipulators; Motion planning; Real time systems; Robot sensing systems; Robot vision systems; Robotics and automation; Robustness; Sensor systems and applications; Target tracking;
fLanguage
English
Journal_Title
Robotics and Automation, IEEE Transactions on
Publisher
ieee
ISSN
1042-296X
Type
jour
DOI
10.1109/70.650169
Filename
650169
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