JOURNAL ARTICLE

火星探测器转移轨道的自主导航方法

Wu WeirenXin MaXiaolin Ning

Year: 2012 Journal:   Scientia Sinica Informationis Vol: 42 (8)Pages: 936-948   Publisher: Science China Press

Abstract

The high precision autonomous navigation is an urgent demand during the cruise phase of Mars probe. The paper outlines and reviews the navigation methods and their accuracies applied in interplanetary cruise phase, and introduces the practical issue that observing multiple navigation sources simultaneously is difficult in actual mission. In order to ensure the navigation accuracy and avoid the simultaneously observing difficulty, an autonomous navigation method based on information fusion by observing asteroid and X-ray pulsar star alternately is presented in this paper. After investigating the force model, the asteroid and X-ray pulsar measurement models and measurement processing, information fusion can be carried out after the asteroid and X-ray pulsar star are observed alternately and are mapped back to the same epoch. An analysis of the available measurement is studied, and the position and velocity of the probe is estimated using the asteroid navigation method, the pulsar navigation method and the asteroid/pulsar method in 2013 Mars Mission scenario. Simulations show the asteroid/pulsar navigation method achieves the best accuracy performance compared with either method alone, which can not only provide precise orbit determination information for trajectory control maneuvers, but also is easy to implement as well. The results demonstrate the method is feasible and effective during cruise phase of Mars probe, and it is particularly useful for autonomous navigation system design in the future deep space exploration.

Keywords:
Computer science

Metrics

8
Cited By
0.28
FWCI (Field Weighted Citation Impact)
0
Refs
0.63
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Robotic Path Planning Algorithms
Physical Sciences →  Computer Science →  Computer Vision and Pattern Recognition
Spacecraft Dynamics and Control
Physical Sciences →  Engineering →  Aerospace Engineering

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