Research on the Lissajous Trajectory Transfer of Large Area Mass Ratio Solar Sail Spacecraft

Considering that the solar sail spacecraft working in the Lissajous orbit will be affected by the shadow of the earth or the solar wind, which sometime makes the spacecraft unable to work, we try to use the solar light pressure as the thrust to carry out the Lissajous orbit transfer in advance. Beca...

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Format: Article
Language:zho
Published: EDP Sciences 2020-10-01
Series:Xibei Gongye Daxue Xuebao
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Online Access:https://www.jnwpu.org/articles/jnwpu/full_html/2020/05/jnwpu2020385p1054/jnwpu2020385p1054.html
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collection DOAJ
description Considering that the solar sail spacecraft working in the Lissajous orbit will be affected by the shadow of the earth or the solar wind, which sometime makes the spacecraft unable to work, we try to use the solar light pressure as the thrust to carry out the Lissajous orbit transfer in advance. Because the solar pressure parameters(cone angle, clock angle and solar pressure factor) will change the position of the libration points, we propose the idea of splicing the old and new libration point manifolds to transfer the escape spacecraft to the new Lissajous orbit to achieve orbit maintenance. The simulation results show that besides changing the cone angle and the solar pressure factor, the clock angle can also achieve orbit transfer, and the influence of the solar pressure factor on the periodic orbit is greater than the other two. This study provides a reference for the solar sail spacecraft in the aspects of periodic orbit transfer, orbit maintenance and avoidance of the earth's shadows.
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spelling doaj.art-2ad1648c5b144e54aa35a7344d7026692023-12-03T03:27:53ZzhoEDP SciencesXibei Gongye Daxue Xuebao1000-27582609-71252020-10-013851054106210.1051/jnwpu/20203851054jnwpu2020385p1054Research on the Lissajous Trajectory Transfer of Large Area Mass Ratio Solar Sail Spacecraft01School of Astronautics, Northwestern Polytechnical UniversitySchool of Astronautics, Northwestern Polytechnical UniversityConsidering that the solar sail spacecraft working in the Lissajous orbit will be affected by the shadow of the earth or the solar wind, which sometime makes the spacecraft unable to work, we try to use the solar light pressure as the thrust to carry out the Lissajous orbit transfer in advance. Because the solar pressure parameters(cone angle, clock angle and solar pressure factor) will change the position of the libration points, we propose the idea of splicing the old and new libration point manifolds to transfer the escape spacecraft to the new Lissajous orbit to achieve orbit maintenance. The simulation results show that besides changing the cone angle and the solar pressure factor, the clock angle can also achieve orbit transfer, and the influence of the solar pressure factor on the periodic orbit is greater than the other two. This study provides a reference for the solar sail spacecraft in the aspects of periodic orbit transfer, orbit maintenance and avoidance of the earth's shadows.https://www.jnwpu.org/articles/jnwpu/full_html/2020/05/jnwpu2020385p1054/jnwpu2020385p1054.htmlartificial libration pointsolar sail spacecraftsolar pressureperiodic orbit transfersimulationlissajous orbit
spellingShingle Research on the Lissajous Trajectory Transfer of Large Area Mass Ratio Solar Sail Spacecraft
Xibei Gongye Daxue Xuebao
artificial libration point
solar sail spacecraft
solar pressure
periodic orbit transfer
simulation
lissajous orbit
title Research on the Lissajous Trajectory Transfer of Large Area Mass Ratio Solar Sail Spacecraft
title_full Research on the Lissajous Trajectory Transfer of Large Area Mass Ratio Solar Sail Spacecraft
title_fullStr Research on the Lissajous Trajectory Transfer of Large Area Mass Ratio Solar Sail Spacecraft
title_full_unstemmed Research on the Lissajous Trajectory Transfer of Large Area Mass Ratio Solar Sail Spacecraft
title_short Research on the Lissajous Trajectory Transfer of Large Area Mass Ratio Solar Sail Spacecraft
title_sort research on the lissajous trajectory transfer of large area mass ratio solar sail spacecraft
topic artificial libration point
solar sail spacecraft
solar pressure
periodic orbit transfer
simulation
lissajous orbit
url https://www.jnwpu.org/articles/jnwpu/full_html/2020/05/jnwpu2020385p1054/jnwpu2020385p1054.html