Title :
Haptic-enabled Collaborative Training with Generalized Force and Position Mappings
Author :
Moghimi, Saba ; Sirouspour, Shahin ; Malysz, Pawel
Abstract :
A control framework is introduced for collaborative training in haptic-enabled virtual environments. To increase the versatility of the proposed approach, the haptic interface control is separated from the virtual environment simulation, which can be of either impedance or admittance-type. Adaptive nonlinear controllers are developed to enforce desired linear-time-invariant and/or nonlinear static mappings among the users and the virtual task environment positions and forces. The controllers account for nonlinear models of the haptic devices and can cope with uncertainties present in the users and haptic devices dynamics. The performance and closed-loop stability of the proposed methods are demonstrated in two steps. First, using a Lyapunov analysis, the tracking behavior of the system is shown. Then given a priori known bounds on the users and environment parameters, the robust stability of the closed-loop system is analyzed based on the Nyquist envelops of interval plants and an off-axis circle criterion. Experimental results demonstrate the effectiveness of the proposed controllers.
Keywords :
Lyapunov methods; adaptive control; closed loop systems; computer based training; groupware; haptic interfaces; nonlinear control systems; stability; virtual reality; Lyapunov analysis; adaptive nonlinear controllers; admittance-type simulation; closed-loop stability; generalized force mapping; haptic devices; haptic interface control; haptic-enabled collaborative training; haptic-enabled virtual environment; impedance-type simulation; linear-time-invariant mapping; nonlinear static mapping; off-axis circle criterion; position mapping; virtual task environment position; Adaptive control; Collaboration; Force control; Haptic interfaces; Impedance; Nonlinear dynamical systems; Programmable control; Stability; Uncertainty; Virtual environment; Adaptive Nonlinear Control; Circle Criterion; Collaborative Haptics; Collaborative Training; Haptic-based Training;
Conference_Titel :
Haptic interfaces for virtual environment and teleoperator systems, 2008. haptics 2008. symposium on
Conference_Location :
Reno, NE
Print_ISBN :
978-1-4244-2005-6
DOI :
10.1109/HAPTICS.2008.4479960