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Investigation of Steady-State Motion of an Artificial Earth Satellite in the Uniaxial Magnetic Orientation Mode

机译:单轴磁定向模式中人造地球卫星稳态运动的研究

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摘要

The rotational motion of an axisymmetric artificial satellite with a constant magnet under an effect of a torque produced by the Earth's magnetic field (EMF) influence on the magnet is studied. The orbital motion of a satellite is calculated taking into account the noncentral nature of the Earth's gravitational field and the atmospheric drag; the proper magnetic moment of a satellite is parallel to the axis of symmetry. The steady-state motions of a satellite are constructed, in which the axis of symmetry makes a small angle with the EMF intensity vector. The IGRF model is used as the EMF model. It is shown that such motions can be approximated by a sequence of periodic solutions of modified equations of motion. Steady-state motions contain two basis frequencies-the orbital and angular velocity of the Earth's rotation. Periodic solutions have an orbital period, but the spectrum of the approximating sequence composed of them virtually coincides with the spectrum of the original steady-state mode.
机译:研究了轴对称人造卫星在由地球磁场(EMF)对磁体产生的扭矩的效果下具有恒定磁体的轴对称人造卫星的旋转运动。考虑到地球的引力场和大气阻力的非中心性,计算卫星的轨道运动;卫星的适当磁矩平行于对称轴线。构造卫星的稳态运动,其中对称轴与EMF强度向量进行小角度。 IGRF模型用作EMF模型。结果表明,这种运动可以通过改进的运动方程的一系列周期解之地近似。稳态运动包含两个基准频率 - 地球旋转的轨道和角速度。定期溶液具有轨道周期,但是由它们组成的近似序列的光谱几乎与原始稳态模式的频谱一致。

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  • 来源
    《Cosmic research》 |2021年第2期|112-125|共14页
  • 作者

    Ignatov A. I.; Sazonov V. V.;

  • 作者单位

    Khrunichev State Space Res & Prod Ctr Moscow Russia;

    Russian Acad Sci Keldysh Inst Appl Math Moscow Russia;

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  • 正文语种 eng
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