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Circular Orbit Target Capture Using Space Tether-Net System

机译:利用空间网络系统捕获圆形轨道目标

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摘要

The space tether-net system for on-orbit capture is proposed in this paper. In order to research the dynamic behaviors during system deployment, both free and nonfree deployment dynamics in circular orbit are developed; the system motion with respect to Local Vertical and Local Horizontal frame is also researched with analysis and simulation. The results show that in the case of free deployment, the capture net follows curve trajectories due to the relative orbit dynamic perturbation, and the initial deployment velocities are planned by state transformation equations for static and floating target captures; in the case of non-free deployment, the system undergoes an altitude libration along the Local Vertical, and the analytical solutions that describe the attitude libration are obtained by using variable separation and integration. Finally, the dynamics of postdeployment system is also proved marginally stable if the critical initial conditions are satisfied.
机译:本文提出了一种用于在轨捕获的空间网络系统。为了研究系统部署过程中的动态行为,开发了圆形轨道的自由和非自由部署动力学。还通过分析和仿真研究了系统相对于局部垂直和局部水平框架的运动。结果表明,在自由部署的情况下,捕获网由于相对轨道的动态扰动而遵循曲线轨迹,并且通过状态转换方程来计划初始部署速度,以进行静态和浮动目标捕获。在非自由部署的情况下,系统会沿局部垂直方向发生高度释放,并且通过使用变量分离和积分来获得描述姿态释放的解析解。最后,如果满足关键的初始条件,则部署后系统的动力学也被证明是稳定的。

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  • 来源
    《Mathematical Problems in Engineering》 |2013年第3期|601482.1-601482.11|共11页
  • 作者单位

    School of Aerospace Engineering, Beijing Institute of Technology, Beijing 100081, China;

    School of Aerospace Engineering, Beijing Institute of Technology, Beijing 100081, China;

    School of Aerospace Engineering, Beijing Institute of Technology, Beijing 100081, China;

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