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The Research of Intelligent Parallel Approach for Space Debris Grasping Manipulator Trajectory Planning

  • Muyan Bai
  • , Jinyu Zhang
  • , Shichao Ma
  • , Xin Ning
  • Northwestern Polytechnical University Xian
  • China Aerospace Science and Technology Corporation

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

In the context of an escalating frequency of space-related activities, there is an increasing accumulation of space junk in orbit, which poses a significant threat to the safety of spacecraft launches and ongoing space activities. Consequently, the capture and removal of non-cooperative targets in space has become a critical component in ensuring the safety of space activities. The employment of space manipulators has become pervasive in space missions, owing to their advantageous flexibility and robust operational capabilities. The trajectory planning of the manipulator's end is instrumental in the successful execution of non-cooperative target removal in space. The autonomy and intelligence requirements of space manipulators are gradually increasing, as the complexity of the space environment and mission requirements are also increasing. The currently commonly used planning methods make it difficult to meet the increasingly complex mission requirements. In response to this challenge, this paper presents a multi-strategy Wolf Pack Algorithm Based on Information Interaction (MS-WPAII). MS-WPAII employs the Chebyshev chaotic mapping method to initialize the population, integrating it with the theory of reverse evolution to enhance the dispersion of the initialized population and optimize its quality. In the siege phase, the information interaction between individuals and the fittest individuals within the population is enhanced to improve the algorithm's local search capability and planning efficiency. Furthermore, to ensure the search capability throughout the optimization process and to improve the accuracy and efficiency of planning, MS-WPAII adaptively adjusts the search direction of wolf detection during the wandering phase. Furthermore, MS-WPAII implements a multi-strategy updating mechanism that dynamically chooses various updating methods based on the age of the individuals in the population, utilizing the Metropolis criterion to determine whether to execute a mutation strategy. This approach helps to circumvent the potential risk of the population attaining a local optimum. The simulation results demonstrate that MS-WPAII exhibits superiority over numerous prevalent algorithms with regard to planning accuracy and efficiency. Specifically, MS-WPAII is shown to be capable of generating safe and feasible trajectories at a lower cost and faster speed. This validates the effectiveness and feasibility of using MS-WPAII for trajectory planning of space manipulators to capture non-cooperative targets.

源语言英语
主期刊名23rd IAA Symposium on Space Debris - Held at the 76th International Astronautical Congress, IAC 2025
出版商International Astronautical Federation, IAF
1102-1109
页数8
ISBN(电子版)9798331329273
DOI
出版状态已出版 - 2025
活动23rd IAA Symposium on Space Debris at the 76th International Astronautical Congress, IAC 2025 - Sydney, 澳大利亚
期限: 29 9月 20253 10月 2025

出版系列

姓名Proceedings of the International Astronautical Congress, IAC
2-F218712
ISSN(印刷版)0074-1795

会议

会议23rd IAA Symposium on Space Debris at the 76th International Astronautical Congress, IAC 2025
国家/地区澳大利亚
Sydney
时期29/09/253/10/25

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