Home /Research /Funnel-Control in robotics: An introduction
OTHER

Funnel-Control in robotics: An introduction

Christoph M. Hackl, Christian Endisch, Dierk Schröder

Year
2008
Citations
19

Abstract

An adaptive (time-varying) MIMO/SISO control strategy - funnel-control - for position control of nonlinear, coupled (rigid) robotic systems is presented and its applicability in robotics introductory shown. The concept is based on the high-gain controllability of minimum-phase systems with relative degree one and known high-frequency gain. The approach allows prescribed transient behavior without identification and/or parameter estimation, although the plant is only structurally known. As most industrial applications - also the considered robotic systems - exhibit higher relative degrees, funnel-control is not directly applicable. Therefore a state-feedback like extension is introduced, which permits the reduction of the relative degree and retains the minimum-phase property. The additional implementation of a Pi-like structure assures good disturbance rejection and asymptotic tracking of the reference position trajectory. Simulation results for a 6-DOF Manutec R3 robot show the achievable performance of one overall MIMO Funnel Controller for all joints and one SISO funnel controller for each joint (6 controllers).

Keywords

Control theory (sociology)FunnelControllabilityController (irrigation)RoboticsMIMORobotTrajectoryAdaptive controlControl engineering

Related papers

Browse all OTHER papers