航天器向经过日地振动点附近的小行星传递轨迹的构建

IF 0.8 4区 物理与天体物理 Q4 ASTRONOMY & ASTROPHYSICS
M. V. Pupkov, N. A. Eismont, O. L. Starinova, K. S. Fedyaev
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引用次数: 0

摘要

研究了在日地振动点附近沿限定轨道运动的航天器到近地小行星阿波菲斯和2001 WN5的转移轨迹设计问题。这项研究是为詹姆斯·韦伯太空望远镜和在L2太阳-地球振动点附近运行的光谱-伦琴-伽马宇宙飞船进行的。结果表明,这些航天器可以以较低的燃料成本转移到接近目标天体的轨道上。给出了这种飞行所需的特征速度值的数值计算结果,随后航天器返回到初始振动点附近,以便继续执行主要任务。提出的设计飞往近地小行星飞行方案的概念的优点是航天器轨道的所有部分都位于地球附近。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Construction of Transfer Trajectories of the Spacecraft to Asteroids Passing Near Sun-Earth Libration Points

Construction of Transfer Trajectories of the Spacecraft to Asteroids Passing Near Sun-Earth Libration Points

The paper considers the issues of designing transfer trajectories of spacecraft moving along bounded orbits in vicinities of Sun–Earth libration points to the Near-Earth asteroids Apophis and 2001 WN5. The study was conducted for the James Webb Space Telescope and the Spectrum–Roentgen–Gamma spacecraft operating near the L2 Sun–Earth libration point. It is shown that these spacecraft can be transferred to trajectories of a close approach to the target celestial bodies at low fuel costs. The results of numerical calculations of the values of the characteristic velocity required for such flights with the subsequent return of the spacecraft to the vicinity of the initial libration point in order to continue the main mission are presented. The advantage of the proposed concept for the design of flight schemes to Near-Earth asteroids is that all sections of the spacecraft trajectories are located in a vicinity of the Earth.

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来源期刊
Solar System Research
Solar System Research 地学天文-天文与天体物理
CiteScore
1.60
自引率
33.30%
发文量
32
审稿时长
6-12 weeks
期刊介绍: Solar System Research publishes articles concerning the bodies of the Solar System, i.e., planets and their satellites, asteroids, comets, meteoric substances, and cosmic dust. The articles consider physics, dynamics and composition of these bodies, and techniques of their exploration. The journal addresses the problems of comparative planetology, physics of the planetary atmospheres and interiors, cosmochemistry, as well as planetary plasma environment and heliosphere, specifically those related to solar-planetary interactions. Attention is paid to studies of exoplanets and complex problems of the origin and evolution of planetary systems including the solar system, based on the results of astronomical observations, laboratory studies of meteorites, relevant theoretical approaches and mathematical modeling. Alongside with the original results of experimental and theoretical studies, the journal publishes scientific reviews in the field of planetary exploration, and notes on observational results.
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