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Constraint-Based Interaction Control of Robots Featuring Large Compliance and Deformation

Gabrijel Smoljkic, Gianni Borghesan, Dominiek Reynaerts, Joris De Schutter, Jos Vander Sloten, Emmanuel Vander Poorten

Year
2015
Citations
13

Abstract

This paper introduces a framework for constraint-based force/position control of robots that exhibit large nonlinear structural compliance and that undergo large deformations. Controller synthesis follows hereto the principles of the Task Frame and instantaneous Task Specification using Constraints (iTaSC) formalisms. iTaSC is found particularly suitable due to its ability to express and combine control tasks in a natural way. Control tasks can be formulated as combinations of target positions, velocities, or forces expressed in an arbitrary number and type of coordinate frames. The proposed framework is applied to a mixed mechatronic system composed of a traditional rigid-link robot whose end-effector is a continuum (flexible) link. A selection of different position/force control tasks is prepared to demonstrate the validity and general nature of the proposed framework.

Keywords

RobotConstraint (computer-aided design)Control theory (sociology)MechatronicsTask (project management)Rotation formalisms in three dimensionsControl engineeringController (irrigation)Computer scienceNonlinear system

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