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Station-Keeping Maneuvers for a Geostationary Satellite Using Linear Quadratic Regulator

Authors :
Sunik Lee
Kyu-Hong Choi
Sanguk Lee
Source :
Journal of Astronomy and Space Sciences, Vol 14, Iss 1, Pp 142-149 (1997)
Publication Year :
1997
Publisher :
The Korean Space Science Society, 1997.

Abstract

This paper applied one of the well-known optimal control theory, namely, linear quadratic regulator(LQR), to the station-keeping maneuvers(SKM) for a geostationary satellite. The boundary conditions to transfer the system with a good accuracy at a terminal time were based upon the predicted orbital data which are created due to the Earth's non-uniform mass distribution's effect during 14 days and due to luni-solar effect during 28 days. Through the linearization of the nonlinear system equation with respect to reference orbit and the numerical integration of Riccati equation, the optimal trajectories and the corresponding control law have been obtained by using LQR. from the comparison of ¡âV obtained by LQR with the ¡âV obtained anatically by geometric method, Station Keeping Maneuvers(SKM) via LQR may provide comparable results to a real system. Furthermore it will demonstrate the possibility in fuel optimization and life extension of geostationary satellite.

Subjects

Subjects :
Astronomy
QB1-991

Details

Language :
English
ISSN :
20935587 and 20931409
Volume :
14
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Journal of Astronomy and Space Sciences
Publication Type :
Academic Journal
Accession number :
edsdoj.2bc923230e864a5cb41a796cb5259daf
Document Type :
article