DocumentCode :
1177301
Title :
A unified approach for inverse and direct dynamics of constrained multibody systems based on linear projection operator: applications to control and simulation
Author :
Aghili, Farhad
Author_Institution :
Canadian Space Agency, St.-Hubert, Canada
Volume :
21
Issue :
5
fYear :
2005
Firstpage :
834
Lastpage :
849
Abstract :
This paper presents a unified approach for inverse and direct dynamics of constrained multibody systems that can serve as a basis for analysis, simulation, and control. The main advantage of the dynamics formulation is that it does not require the constraint equations to be linearly independent. Thus, a simulation may proceed even in the presence of redundant constraints or singular configurations, and a controller does not need to change its structure whenever the mechanical system changes its topology or number of degrees of freedom. A motion-control scheme is proposed based on a projected inverse-dynamics scheme which proves to be stable and minimizes the weighted Euclidean norm of the actuation force. The projection-based control scheme is further developed for constrained systems, e.g., parallel manipulators, which have some joints with no actuators (passive joints). This is complemented by the development of constraint force control. A condition on the inertia matrix resulting in a decoupled mechanical system is analytically derived that simplifies the implementation of the force control. Finally, numerical and experimental results obtained from dynamic simulation and control of constrained mechanical systems, based on the proposed inverse and direct dynamics formulations, are documented.
Keywords :
force control; linear systems; motion control; robot dynamics; stability; constrained multibody system; constraint force control; direct dynamics; dynamics formulation; inverse dynamics; linear projection operator; motion control; projection control; robots; stability; weighted Euclidean norm; Analytical models; Differential equations; Force control; Humanoid robots; Jacobian matrices; Legged locomotion; Manipulator dynamics; Mechanical systems; Parallel robots; Topology; Constrained multibody systems; constraint motion control; hybrid force/motion control;
fLanguage :
English
Journal_Title :
Robotics, IEEE Transactions on
Publisher :
ieee
ISSN :
1552-3098
Type :
jour
DOI :
10.1109/TRO.2005.851380
Filename :
1512343
Link To Document :
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