低轨巨型星座的内部碰撞风险评估与构型设计策略
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国家自然科学基金资助项目(12311530055,12002397),深圳市科技计划资助项目(ZDSYS20210623091808026)


Internal Collision Risk Assessment and Configuration Design Strategy of LEO Large Constellations
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    摘要:

    本文主要研究了低轨(low-Earth orbit, LEO)巨型星座部署期间的内部碰撞风险,并以构建的Walker星座为例,探讨了轨道倾角和相位参数对星座内部碰撞风险的影响.研究采用了未考虑摄动效应的球面几何法和考虑摄动效应的碰撞概率法,计算了星座的最小距离和碰撞概率这两个风险指标.碰撞风险分析结果表明,考虑摄动后星座的最小距离整体有所减小;同时,最小距离指标和碰撞概率风险指标的最优构型在考虑摄动时表现出一致性.此外,研究发现星座的最小距离随轨道倾角增加呈2°到6°的周期性波动.据此,提出了一种通过微调轨道倾角来降低碰撞风险的优化策略,并设计了一种在计算资源受限时提升分析精度的构型设计策略,即针对倾角和相位参数的“几何法初筛-摄动细筛”策略.

    Abstract:

    As the deployment of low-orbit large constellations reaching its peak with rapidly expanding scales, this study investigates the internal collision risks during the deployment of large low-Earth orbit (LEO) satellite constellations. A constructed constellation is used as an example to analyze the effect of phase parameters and orbital inclination on internal collision risk. Two methods are employed: the spherical geometry method, which does not consider perturbation effects, and the collision probability method, which does consider perturbation effects, to calculate the constellation's minimum distance and collision probability. Collision analysis reveals that the overall minimum distances decrease when perturbations are considered. Moreover, consistency is observed between the optimal configurations for minimum distance and collision probability indices when perturbations are taken into account. The study also discovers that the minimum distances of the constellation fluctuate periodically by 2° to 6° as orbital inclination increases. Based on these findings, an optimization strategy is proposed that involves fine-tuning the orbital inclination to reduce collision risks. Additionally, a configuration design strategy is designed to improve the computation precision with limited computational resources, namely the “initial screening of inclination by geometric method followed by detailed phase parameter screening with perturbation”

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闭佳,石悦彤,刘晓东.低轨巨型星座的内部碰撞风险评估与构型设计策略[J].动力学与控制学报,2025,23(2):38~46; Bi Jia, Shi Yuetong, Liu Xiaodong. Internal Collision Risk Assessment and Configuration Design Strategy of LEO Large Constellations[J]. Journal of Dynamics and Control,2025,23(2):38-46.

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  • 收稿日期:2024-09-05
  • 最后修改日期:2024-10-14
  • 在线发布日期: 2025-03-13
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