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Dynamic measurement of position and orientation of robots

S. Decker, J.P. Prenninger, H. Gander, M. Vincze

Year
2003
Citations
3

Abstract

A laser tracking system (LTS) capable of measuring the pose (position and orientation) of a robot moving along arbitrary paths is presented. The measurement principle is based on modified triangulation. The laser beam is deflected over a cardanic mounted mirror and follows a retroreflector fixed to the robots end effector. The position of the center of the reflector is calculated from the interferometer distance data (the displacement of the reflected beam with reference to the emitted beam). The edges of the reflector are blackened and create a diffraction pattern within the cross section of the reflected laser beam. By evaluating this pattern, using gray scale image processing methods, the orientation of the retroreflector is determined.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

Keywords

RetroreflectorLaser trackerOpticsCorner reflectorOrientation (vector space)Position (finance)LaserDisplacement (psychology)Reflector (photography)Robot

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