DocumentCode :
3700600
Title :
Analysis of precision estimation of RF metrology in satellite formation flying
Author :
Mu Weiqing;Rongke Liu;Yang Xinxin;Elkedrouci Kamel
Author_Institution :
School of Electronic and Information Engineering Beihang University, Beijing, China
fYear :
2015
Firstpage :
1
Lastpage :
5
Abstract :
Satellite formation flying allows for multiple satellites working together to accomplish the objective of one larger, usually more expensive, satellite. Knowledge of the relative position is required for many formation flying missions. Autonomous relative navigation system based on RF (radio frequency) can be used to acquire such knowledge. Obtaining accurate measurements requires a balanced number of transmitting and receiving antennas with suitable configuration. So under the condition of fixed number of antennas and determined configuration the ranging accuracy, inter-satellite distance, azimuth and elevation are the main factors which affect precision estimation. A LS (Least Squares) algorithm and Newton iteration method are adopted to estimate inter-satellite positions and attitudes. Simulation analysis shows that when the inter-satellite distance increases, the position precision estimate remains minim, and the same applies to angles around the x-axis and y-axis where the measurements errors increase slightly in a linear relationship. Farther, when rotating the satellite around the azimuth (or elevation) angle it would have a small impact on the precision estimate, and contrariwise, it would be the worst when the azimuth (or elevation) is equal to π/4 or - π/4; therefore rises the need for installing additional antennas on other faces of the satellite to improve precision estimate.
Keywords :
"Satellites","Distance measurement","Estimation","Satellite antennas","Receiving antennas","Transmitting antennas","Satellite broadcasting"
Publisher :
ieee
Conference_Titel :
Wireless Communications & Signal Processing (WCSP), 2015 International Conference on
Type :
conf
DOI :
10.1109/WCSP.2015.7341285
Filename :
7341285
Link To Document :
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