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Attitude Stabilization of a Spacecraft Equipped with Large Electrostatic Protection Screens

机译:配备大型静电保护屏幕的航天器的姿态稳定

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A satellite with a system of three electrostatic radiation protection (ERP) screens is under consideration. The screens are constructed as electrostatically charged toroidal shields with characteristic size of order equal to 100 m. The interaction of electric charge with the Earth's magnetic field (EMF) give rise to the Lorentz torque acting upon a satellite attitude motion. As the sizes of ERP system are large, we derive the Lorentz torque taking into account the complex form of ERP screens and gradient of the EMF in the screen volume. It is assumed that the satellite center of charge coincides with the satellite mass center. The EMF is modeled by the straight magnetic dipole. In the paper we investigate the usage of Lorentz torque for passive attitude stabilization for satellite in a circular equatorial orbit. Mathematical model for attitude dynamics of a satellite equipped with ERP interacting with the EMF is derived and first integral of corresponding differential equations is constructed. The straight equilibrium position of the satellite in the orbital frame is found. Sufficient conditions for stability of satellite equilibrium position are constructed with the use of the first integral. The gravity gradient torque is taken into account. The satellite equilibrium stability domain is constructed.
机译:正在考虑具有三种静电辐射保护(ERP)屏幕系统的卫星。屏幕被构造为静电环形屏蔽,其特征尺寸等于100米。电荷与地球磁场(EMF)的相互作用引起洛伦兹扭矩作用在卫星姿态运动上。随着ERP系统的尺寸很大,我们考虑到屏幕体积中的ERP屏幕的复杂形式和EMF的梯度,我们得出了Lorentz扭矩。假设卫星电荷中心与卫星质量中心一致。 EMF由直磁偶极器建模。本文中,我们研究了圆形赤道轨道中卫星被动姿态稳定的Lorentz扭矩的使用。推导出配备ERP与EMF交互的卫星姿态动力学的数学模型,并且构造了相应微分方程的第一积分。发现卫星在轨道框架中的直线平衡位置。利用第一积分构建卫星平衡位置稳定性的充分条件。考虑重力梯度扭矩。构建卫星平衡稳定性结构域。

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