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Research Article

Sustainable Asteroid Mining: Results and methods of team BIT-CAS-DFH for GTOC12

Bo Pang1Yangyuxi Sun1Guoxu Zhang1,6Yining Zhang1Tianhao Zhu1Yangxin Wang5Zihan Jin1Zhaohang Li1Lvzheng He1Meng Lu3Rui Zhou5Yongchen Yin5Yunong Shang1Shengmao He2Chao Peng2Zhengfan Zhu3Yang Zhang4Yang Gao2,5Changxuan Wen1( )
School of Aerospace Engineering, Beijing Institute of Technology, Beijing 100081, China
Key Laboratory of Space Utilization, Technology and Engineering Center for Space Utilization, Chinese Academy of Sciences, Beijing 100094, China
DFH Satellite Company, Beijing 100094, China
Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing 100094, China
University of Chinese Academy of Sciences, Beijing 101408, China
Beijing Institute of Astronautical Systems Engineering, Beijing 100076, China
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Abstract

The 12th Global Trajectory Optimization Competition challenged teams to design trajectories for mining asteroids and transporting extracted resources back to the Earth. This paper outlines the methods and results of the runner-up team, BIT-CAS-DFH, highlighting an overall analysis of the approach as well as detailed descriptions of the methods used. The approach begins with building databases to reduce computational costs in trajectory design. Then, asteroid sequences are determined. A segmentation-based approach was adopted to efficiently handle the large dataset. Each sequence was divided into four time-based segments. Segments 1 and 4 were generated forward and backward, respectively, using a breadth-first beam search. Candidates for these segments were refined using genetic and greedy algorithms. Segments 2 and 3 were then generated and selected forward and backward based on the results of Segments 1 and 4. Following this, a matching process paired candidates from Segments 2 and 3. With the asteroid sequences established, low-thrust trajectories were optimized using indirect methods. A local optimization strategy was employed to maximize the collected mass by fine-tuning rendezvous timings. The final solution is presented, with comparative analyses against other teams' approaches.

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Astrodynamics
Pages 107-128

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Cite this article:
Pang B, Sun Y, Zhang G, et al. Sustainable Asteroid Mining: Results and methods of team BIT-CAS-DFH for GTOC12. Astrodynamics, 2025, 9(1): 107-128. https://doi.org/10.1007/s42064-024-0241-5

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Received: 21 June 2024
Accepted: 01 September 2024
Published: 04 March 2025
© Tsinghua University Press 2025