DocumentCode
488339
Title
A Computational Algorithm for Spacecraft Control and Momentum Management
Author
Dzielski, John ; Bergmann, Edward ; Paradiso, Joseph
Author_Institution
The Applied Research Laboratory, Penn State Univ., State College, PA.
fYear
1990
fDate
23-25 May 1990
Firstpage
1320
Lastpage
1325
Abstract
Recent developments in the area of nonlinear control theory have shown how coordinate changes in the state and input spaces of a dynamical system can be used to transform certain nonlinear differential equations into equivalent linear equations. These techniques are applied here to the control of a spacecraft equipped with momentum exchange devices. An optimal control problem is formulated that incorporates a nonlinear spacecraft model. An algorithm is developed for solving the optimization problem using feedback linearization to transform to an equivalent problem involving a linear dynamical constraint, and a functional approximation technigue to solve for the linear dynamics in terms of the control. The original problem is transformed into an unconstrained nonlinear quadratic program that yields an approximate solution to the original problem. Two examples are presented to illustrate the results.
Keywords
Actuators; Aerodynamics; Constraint optimization; Control systems; Differential equations; Feedback; Laboratories; Nonlinear equations; Space vehicles; Transforms;
fLanguage
English
Publisher
ieee
Conference_Titel
American Control Conference, 1990
Conference_Location
San Diego, CA, USA
Type
conf
Filename
4790955
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