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四体模型下2∶1 DRO附近的拟周期轨道OA

Quasi-periodic orbits near 2∶1 resonant DRO in the four-body problem

中文摘要英文摘要

地月空间 2∶1共振远距离逆行轨道(DRO)因其长期稳定和全域可达的良好特性,在当前地月空间任务探索中具有重要的战略意义.为进一步理解 2∶1 DRO附近的相空间结构,同时提供更多的可供选择的停泊轨道,在双圆限制性四体模型(BCR4BP)下对 2种不同构型的 2∶1 DRO附近的拟周期轨道进行了计算.针对目前数值延拓计算拟周期轨道过程较为繁复的缺点,提出一种自适应延拓算法,该算法可自动调节延拓步长及添加表征环面所需的离散节点数量,从而在保证环面精度的情况下越过共振区,同时平衡了计算时间.在此基础上,针对 BCR4BP中 2种不同构型的 2∶1 DRO,分别计算了其附近存在的 2D拟 DRO 族,进一步分析了其稳定特性.仿真结果表明:所提算法能有效差异化处理采样阶次不足与共振奇异,从而得到较为完整的轨道族.

The 2∶1 resonant distant retrograde orbit(DRO),owing to its long-term stability and extensive global accessibility in the Earth-Moon space,holds strategic significance in contemporary space exploration missions.Investigations of quasi-periodic orbits near two distinct configurations of the 2∶1 DRO were carried out in the bicircular restricted four-body problem(BCR4BP)in order to better understand the phase space structure near the 2∶1 DRO and offer more parking orbit alternatives.Firstly,addressing the complexity in the numerical continuation of quasi-periodic orbits,an adaptive continuation scheme was proposed.This approach ensures the overstep of the resonance region while maintaining torus accuracy by automatically adjusting the continuation step size and the number of discrete nodes representing the torus.Based on this scheme,we computed quasi-periodic families near the 2∶1 DRO for both configurations in the BCR4BP and conducted a comprehensive analysis of their stability characteristics.The simulation results demonstrate the efficacy of the proposed method in differentiating and handling issues related to insufficient sampling orders and resonance singularities,yielding a more complete set of orbit families.

王明;杨驰航;张皓

西安现代控制技术研究所,西安 710065||中国科学院大学,北京 100049||中国科学院太空应用重点实验室 中国科学院空间应用工程与技术中心,北京 100094北京控制工程研究所,北京 100094中国科学院大学,北京 100049||中国科学院太空应用重点实验室 中国科学院空间应用工程与技术中心,北京 100094

航空航天

远距离逆行轨道双圆限制性四体模型拟周期轨道地月空间数值延拓

distant retrograde orbitbicircular restricted four-body problemquasi-periodic orbitscislunar spacenumerical continuation

《北京航空航天大学学报》 2026 (4)

1148-1159,12

中国科学院战略性先导科技专项(XDA30010200) Strategic Priority Program on Space Science of the Chinese Academy of Sciences(XDA30010200)

10.13700/j.bh.1001-5965.2024.0061

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