Home /Research /An adaptive approach to motion and force control of multiple coordinated robot arms
OTHER

An adaptive approach to motion and force control of multiple coordinated robot arms

Yan‐Ru Hu, A.A. Goldenberg

Year
2003
Citations
97

Abstract

An approach to motion and force control of multiple coordinated robot arms based on an adaptive scheme is developed. The adaptation law uses Popov hyperstability theory to estimate online the uncertain parameters of multiple robot arms and payload. The approach can be used to control the motion of an object held by the arms, the contact forces between the object and the environment, and the internal forces that do not contribute to the motion and the contact forces. Three subsystem error equations are generated, i.e. a position error subsystem, a contact force error subsystem, and an internal force error subsystem. The unknown parameters of the multiple coordinated robot arms and the object are estimated in terms of the three error subsystem equations. It is shown that the proposed adaptive control scheme improves the position and internal and contact force tracking accuracy of a class of systems with an uncertain knowledge of the dynamic model.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

Keywords

Payload (computing)Control theory (sociology)Position (finance)Contact forceRobotObject (grammar)TrajectoryMotion (physics)Computer scienceAdaptive control

Related papers

Browse all OTHER papers