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A relational positioning methodology for robot task specification and execution

delete2008-06-01
delete22
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OA
AI
A
A. Rodríguez *
B
Basanez, Luis
E
Enric Celaya
DOI:10.1109/TRO.2008.924263delete
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Abstract

Abstract

En 中文
This paper presents a relational positioning methodology that allows to restrict totally or partially the movements of an object by specifying its allowed positions in terms of a set of intuitive geometric constraints. In order to derive these positions, a geometric constraint solver must be used. To this end, positioning mobile with respect to fixed (PMF), a geometric constraint solver for the relational positioning of rigid objects in free space is introduced. The solver exploits the fact that, in a set of geometric constraints, the rotational component can often be separated from the translational one and solved independently. PMF may be used as an interface for specifying offline-programmed robot tasks, as well as for assisting the execution of teleoperated tasks requiring constrained movements. Examples describing both the solver's operation and typical applications are discussed.
Keywords:
assembly planning
geometric constraint solving
relational positioning
robot programming
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Journal

IEEE Transactions on Robotics cover
IEEE Transactions on Robotics
IF:
10.5
Papers:
3.3K
Citations:
2.8W

Organization

C
consejo superior de investigaciones cientificas (csic)
Scholars:
8.8W
Papers: 8.5W
Citations: 125
U
universitat politecnica de catalunya
Scholars:
1.9W
Papers: 1.6W
Citations: 17