DocumentCode
1236076
Title
Line-of-sight-pointing for satellites in high altitude inclined elliptic orbits
Author
Kumar, K.D. ; Kumar, K.
Author_Institution
Dept. of Aerosp. Eng., Ryerson Univ., Toronto, Ont., Canada
Volume
41
Issue
3
fYear
2005
fDate
7/1/2005 12:00:00 AM
Firstpage
819
Lastpage
829
Abstract
With a growing demand for space communications and resulting overcrowding of geostationary orbit (GEO), the importance of high altitude inclined elliptic orbits is gaining impetus. However, the satellites in these orbits suffer from a severe problem of apparent periodic angular drift around their line-of-sight. This paper addresses this problem and proposes a cost effective method based on tether to continually tilt the satellites in order to compensate for longitudinal and lateral drifts relative to the ground station. The proposed system comprises two satellites connected by a flexible tether at a point on each satellite with offsets. A control strategy is developed for tether offset variations that ensures judiciously controlled changes in the satellite orientations. The numerical simulation of the governing nonlinear equations of motion establishes the feasibility of the concept. A high degree of line-of-sight pointing of dual satellites as well as the simplicity of the proposed control mechanism makes the concept particularly attractive for future space applications.
Keywords
artificial satellites; attitude control; motion control; GEO; geostationary orbit; high altitude inclined elliptic orbits; line-of-sight-pointing; nonlinear equations; periodic angular drift; satellite orientations; space communications; Aerospace engineering; Artificial satellites; Control systems; Force control; Geoscience; Motion control; Orbits; Space technology; Strain control; Weight control;
fLanguage
English
Journal_Title
Aerospace and Electronic Systems, IEEE Transactions on
Publisher
ieee
ISSN
0018-9251
Type
jour
DOI
10.1109/TAES.2005.1541432
Filename
1541432
Link To Document