JOURNAL ARTICLE

Autonomous Orbit Determination for a Hybrid Constellation

Muzi LiBo XuJun Sun

Year: 2018 Journal:   International Journal of Aerospace Engineering Vol: 2018 Pages: 1-13   Publisher: Hindawi Publishing Corporation

Abstract

A new orbit determination scheme targeting communication and remote sensing satellites in a hybrid constellation is investigated in this paper. We first design one such hybrid constellation with a two-layer configuration (LEO/MEO) by optimizing coverage and revisit cycle. The main idea of the scheme is to use a combination of imagery, altimeter data, and inter-satellite range data as measurements and determine orbits of the satellites in the hybrid constellation with the help of the extended Kalman filter (EKF). The performance of the new scheme is analyzed with Monte Carlo simulations. We first focus on an individual remote sensing satellite and compared the performance of orbit determination using only imagery with its counterpart using both imagery and altimeter measurements. Results show that the performance improves when imagery is used with altimeter data pointing to geometer calibration sites but declines when used with ocean altimeter data. We then expand the investigation to the whole constellation. When inter-satellite range data is added, orbits of all the satellites in the hybrid constellation can be autonomously determined. We find that the combination of inter-satellite range data with remote sensing observations lead to a further improvement in orbit determination precision for LEO satellites. Our results also show that the performance of the scheme would be affected when remote sensing observations on certain satellites are absent.

Keywords:
Constellation Remote sensing Satellite Orbit determination Satellite constellation Computer science Altimeter Orbit (dynamics) Ground track Nadir Range (aeronautics) Kalman filter Environmental science Geostationary orbit Global Positioning System Geology Artificial intelligence Telecommunications Aerospace engineering Physics Engineering

Metrics

2
Cited By
0.37
FWCI (Field Weighted Citation Impact)
10
Refs
0.76
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Spacecraft Design and Technology
Physical Sciences →  Engineering →  Aerospace Engineering
Space Satellite Systems and Control
Physical Sciences →  Engineering →  Aerospace Engineering
Satellite Communication Systems
Physical Sciences →  Engineering →  Aerospace Engineering
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