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Controllability of spacecraft attitude under magnetic actuation

机译:磁力驱动下航天器姿态的可控性

摘要

In this paper, we apply nonlinear controllability theory to the attitude dynamics of a magnetically actuated spacecraft in a Keplerian orbit in the geomagnetic field. The variation of the geomagnetic field along the orbit makes the dynamical equations time varying in nature. Hence we first present sufficient conditions for accessibility, strong accessibility and controllability of a general time-varying system. We apply these sufficient conditions to show that the attitude dynamics of a spacecraft actuated by three magnetic actuators and subjected to a general time-varying magnetic field are strongly accessible if the magnetic field and its first two time derivatives are linearly independent at every instant. In addition, if the magnetic field is periodic in time, then the attitude dynamics of the spacecraft are controllable. These results are used to show that the attitude dynamics of a spacecraft actuated by three magnetic actuators in a closed Keplerian orbit in a of the geomagnetic field are strongly accessible and controllable if the orbital plane contains neither the geomagnetic equator nor the geomagnetic poles.
机译:在本文中,我们将非线性可控性理论应用于地磁场中开普勒轨道上的磁致航天器的姿态动力学。地磁场沿轨道的变化使动力学方程随时间变化。因此,我们首先为通用时变系统的可访问性,强大的可访问性和可控性提供了充分的条件。我们应用这些充分条件表明,如果磁场及其前两个时间导数在每个时刻线性独立,那么由三个磁致动器致动并受到一般时变磁场的航天器的姿态动力学是很容易获得的。另外,如果磁场是周期性的,则航天器的姿态动力学是可控的。这些结果用于表明,如果轨道平面既不包含地磁赤道也不包含地磁极,则在地磁场的闭合开普勒轨道中由三个磁致动器致动的航天器的姿态动力学是很容易接近和控制的。

著录项

  • 作者

    BHAT SP; DHAM AS;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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