DocumentCode
846177
Title
Exact nonlinear control of large angle rotational maneuvers
Author
Dwyer, Thomas W.
Author_Institution
Colorado State Univ., Fort Collins, CO, USA
Volume
29
Issue
9
fYear
1984
fDate
9/1/1984 12:00:00 AM
Firstpage
769
Lastpage
774
Abstract
The rigid body attitude control problem with external torques is transformed into an equivalent linear form implementable by three double integrators. The linearizing transformations themselves are formulated in vector algebra, requiring no integrators for implementation. It is thereby shown that optimal command generation for fast slewing maneuvers can be carried out exactly in the transformed system, together with regulator design without gain scheduling for correction of unmodeled disturbances. In particular, a general rest-to-rest maneuver is computed in closed form, and coupled with a previously obtained exact detumbling maneuver so that arbitrary initial conditions can be accommodated. An illustrative simulation is appended.
Keywords
Motion control; Optimal control, nonlinear systems; Rotating bodies; Algebra; Feedback; Infinite horizon; Nonlinear equations; Optimal control; Performance analysis; Processor scheduling; Quaternions; Regulators; Vectors;
fLanguage
English
Journal_Title
Automatic Control, IEEE Transactions on
Publisher
ieee
ISSN
0018-9286
Type
jour
DOI
10.1109/TAC.1984.1103665
Filename
1103665
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