DocumentCode
3065171
Title
Maneuverability constraints for supervisory steering control
Author
Krogh, B.H. ; Graettinger, T.J.
Author_Institution
Carnegie Mellon University, Pittsburgh, PA
fYear
1985
fDate
11-13 Dec. 1985
Firstpage
279
Lastpage
284
Abstract
Real-time feedback algorithms proposed for supervisory steering control of robotic manipulators or autonomous vehicles are based on models of the system dynamics in the global coordinates of the workspace. On the other hand, the system dynamics and control limits are most easily specified in generalized coordinates directly related to the generalized degrees of freedom and torque/force inputs for the manipulator or vehicle. This paper concerns the mapping of the state and control variable constraints in the generalized coordinates into operating regions and acceleration limits in the global coordinates. The objective is to determine maneuverability constraints in the global frame which facilitate computationally tractable supervisory control algorithms while guaranteeing the feasibility of the desired controls. The paper defines the general steering control problem, describes a formal procedure for determining maneuverability constraints and discusses the application of the concepts to a two-degree-of-freedom manipulator. Several directions for future research are discussed in the concluding section.
Keywords
Feedback; Force control; Manipulator dynamics; Mobile robots; Real time systems; Remotely operated vehicles; Robot control; Robot kinematics; Torque control; Vehicle dynamics;
fLanguage
English
Publisher
ieee
Conference_Titel
Decision and Control, 1985 24th IEEE Conference on
Conference_Location
Fort Lauderdale, FL, USA
Type
conf
DOI
10.1109/CDC.1985.268845
Filename
4048286
Link To Document