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Variable-mass gravity tractor for asteroid deflection: Full mission process optimization and deflection efficiency analysis

delete2025-10-15
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OA
AI
李锋瑞 (Fengrui Li)
K
Kaiduo WANG
李明涛 (Mingtao Li) *
Y
Yirui Wang
DOI:10.1016/j.cja.2025.103876delete
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Abstract

Abstract

En 中文
The Gravity Tractor (GT) is a spacecraft that deflects an asteroid using its gravitational force to gradually alter the asteroid’s trajectory without making physical contact. This paper proposes a comprehensive mission optimization framework to maximize orbital deflection distance in variable-mass GT missions, incorporating key constraints: launch performance, warning time, and operational strategies. Simulation results suggest that the deflection distance of GT does not increase linearly with warning time due to launch window constraints, and the three-pulse transfer scenario does not provide significantly greater deflection distance compared to the two-pulse transfer scenario. Moreover, in the static hovering scenario, the deflection distance first increases and then decreases with the effective tractor distance, whereas in the displaced orbit scenario, it decreases monotonically. Finally, considering the launch performance of CZ-5, a 10-year warning time enables the defense against 50-meter asteroids, while a 20-year warning time enables the defense against 100-meter asteroids. This research provides valuable insights into the evaluation of GT deflection efficiency and the engineering design of GT-based missions.
Keywords:
Asteroid defense
Virtual impactor
Gravity tractor
Trajectory optimization
Orbital dynamics
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Journal

Chinese Journal of Aeronautics cover
Chinese Journal of Aeronautics
IF:
5.7
Papers:
4.7K
Citations:
1.4W

Organization

U
University of Chinese Academy of Sciences
Scholars:
6.2K
Papers: 2.5K
Citations: 24.6W
A
Aerospace Centre of Excellence
Scholars:
1
Papers: 1
Citations: 0