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Orbital dynamics of earth-orbiting 'smart dust' spacecraft under the effects of solar radiation pressure and aerodynamic drag

机译:在太阳辐射压力和空气动力学阻力的作用下,绕地球飞行的“智能尘埃”航天器的轨道动力学

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摘要

This paper investigates how the perturbations due to asymmetric solar radiation pressure, in presence of Earth's shadow, and atmospheric drag can be balanced to obtain long-lived Earth centered orbits for swarms of SpaceChips, without the use of active control. The secular variation of Keplerian elements is expressed analytically through an averaging technique. Families of solutions are then identified where a Sun-synchronous apse-line precession is achieved passively. The long-term evolution is characterized by librational motion, progressively decaying due to the non-conservative effect of atmospheric drag. Therefore, long-lived orbits can be designed through the interaction of energy gain from asymmetric solar radiation pressure and energy dissipation due to drag. In this way, the short life-time of high area-to-mass spacecraft can be greatly extended (and indeed selected). In addition, the effect of atmospheric drag can be exploited to ensure the end-of life decay of SpaceChips, thus preventing long-lived orbit debris.
机译:本文研究了在不使用主动控制的情况下,如何平衡由于不对称的太阳辐射压力,存在的地球阴影和大气阻力而引起的扰动,从而获得长寿命的以地球为中心的空间碎片群轨道。开普勒元素的长期变化是通过平均技术来分析表示的。然后确定解决方案系列,以被动方式实现与太阳同步的近地点线进动。长期演变的特征是自由运动,由于大气阻力的非保守作用而逐渐衰减。因此,可以通过不对称太阳辐射压力的能量增益与阻力引起的能量耗散的相互作用来设计长寿命轨道。这样,可以大大延长(乃至确实选择)高面积质量的航天器的短寿命。此外,可以利用大气阻力的作用来确保SpaceChips寿命终止,从而防止长期存在的轨道碎片。

著录项

  • 作者

    Colombo, C.; McInnes, C.R.;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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