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Satellite dynamics under the influence of gravitational and aerodynamic torques. A study of stability of equilibrium positions

机译:重力和空气动力学转矩影响下的卫星动力学。平衡位置稳定性的研究

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摘要

The dynamics of the rotational motion of a satellite, moving in the central Newtonian force field under the influence of gravitational and aerodynamic torques, is investigated. The paper proposes a method for determining all equilibrium positions (equilibrium orientations) of a satellite in the orbital coordinate system for specified values of aerodynamic torque and the major central moments of inertia; the sufficient conditions for their existence are obtained. For each equilibrium orientation the sufficient stability conditions are obtained using the generalized energy integral as the Lyapunov function. The detailed numerical analysis of the regions where the stability conditions of the equilibrium positions are satisfied is carried out depending on four dimensionless parameters of the problem. It is shown that, in the general case, the number of satellite's equilibrium positions, for which the sufficient stability conditions are satisfied, varies from 4 to 2 with an increase in the value of the aerodynamic torque magnitude.
机译:研究了在重力和空气动力学转矩的影响下,在牛顿中心力场中运动的卫星旋转运动的动力学。本文提出了一种方法,用于确定卫星在轨道坐标系中的所有平衡位置(平衡方向),以指定空气动力学扭矩和主要中心惯性矩的值。获得了它们存在的充分条件。对于每个平衡方向,使用广义能量积分作为Lyapunov函数可获得足够的稳定性条件。根据问题的四个无量纲参数,对满足平衡位置稳定性条件的区域进行了详细的数值分析。结果表明,在一般情况下,随着气动扭矩大小值的增加,满足充分稳定条件的卫星平衡位置的数量从4变为2。

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  • 来源
    《Cosmic research》 |2016年第5期|388-398|共11页
  • 作者

    Sarychev V. A.; Gutnik S. A.;

  • 作者单位

    Russian Acad Sci, Keldysh Inst Appl Math, Moscow 125047, Russia;

    Moscow State Inst Int Relat, Moscow 119454, Russia|State Univ, Moscow Inst Phys & Technol, Dolgoprudnyi, Moskow Oblast, Russia;

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