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Application of a Generic Constraint-Based Programming Approach to an Industrially Relevant Robot Task with Geometric Uncertainties

Wilm Decré, Tinne De Laet, Johan Rutgeerts, Herman Bruyninckx, Joris De Schutter

Year
2007
Citations
3

Abstract

This paper shows the application of a generic constraint-based task specification approach for sensor-based robot systems to a laser tracing example. Key properties of the used approach are (i) its ability to specify complex robot tasks by introducing auxiliary task-oriented feature coordinates, defined with respect to user-defined object and feature frames, (ii) its support for both underconstrained and overconstrained robot tasks, and (iii) its ability to integrate sensor measurements in a unified way, using auxiliary uncertainty coordinates, to estimate geometric uncertainties in the robot system or its environment. Simulation and real world experimental results are presented.

Keywords

Task (project management)Constraint programmingComputer scienceConstraint (computer-aided design)RobotGeometric programmingMathematical optimizationProgramming languageHuman–computer interactionArtificial intelligence

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