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MANIPULATION

Multi-objective compliance control of redundant manipulators: Hierarchy, control, and stability

Alexander Dietrich, Christian Ott, Alin Albu‐Schäffer

Year
2013
Citations
53

Abstract

Robots with a large number of actuated degrees of freedom are usually redundant w.r.t. a given task. That kinematic redundancy can be utilized to execute additional tasks simultaneously, e. g. via null space projection techniques. We introduce a new representation of hierarchical robot dynamics which are based on a set of particular null space velocities. Dynamic consistency is preserved, and strict compliance with the order of priority is ensured at all times due to a power-conserving cancellation of coupling terms by active control. No external force measurements have to be performed. We show asymptotic stability of the generic closed-loop system with an arbitrary number of hierarchy levels. Several simulations confirm our results.

Keywords

Redundancy (engineering)Control theory (sociology)HierarchyKinematicsRobotProjection (relational algebra)Stability (learning theory)Computer scienceNull (SQL)Representation (politics)

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