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Geosynchronous earth orbit/low earth orbit space object inspection and debris disposal: A preliminary analysis using a carrier satellite with deployable small satellites.

机译:地球同步地球轨道/低地球轨道空间物体检查和碎片处理:使用运载卫星和可部署小型卫星的初步分析。

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摘要

Detailed observations of geosynchronous satellites from earth are very limited. To better inspect these high altitude satellites, the use of small, refuelable satellites is proposed. The small satellites are stationed on a carrier platform in an orbit near the population of geosynchronous satellites. A carrier platform equipped with deployable, refuelable SmallSats is a viable option to inspect geosynchronous satellites. The propellant requirement to transfer to a targeted geosynchronous satellite, perform a proximity inspection mission, and transfer back to the carrier platform in a nearby orbit is determined. Convex optimization and traditional optimization techniques are explored, determining minimum propellant trajectories. Propellant is measured by the total required change in velocity, delta-v. The trajectories were modeled in a relative reference frame using the Clohessy-Wiltshire equations. Mass estimations for the carrier platform and the SmallSat were determined by using the rocket equation. The mass estimates were compared to the mass of a single, non-refuelable satellite performing the same geosynchronous satellite inspection missions. From the minimum delta-v trajectories and the mass analysis, it is determined that using refuelable SmallSats and a carrier platform in a nearby orbit can be more efficient than using a single non-refuelable satellite to perform multiple geosynchronous satellite inspections.
机译:来自地球的地球同步卫星的详细观测非常有限。为了更好地检查这些高空卫星,建议使用小型可加油的卫星。这些小型卫星位于地球同步卫星总数附近轨道上的运载平台上。配备可部署,可加油的SmallSats的运载平台是检查地球同步卫星的可行选择。确定了转移到目标地球同步卫星,执行近程检查任务并转移回附近轨道的运载平台的推进剂要求。探索凸优化和传统优化技术,确定最小推进剂轨迹。推进剂通过所需的总速度变化量delta-v来衡量。使用Clohessy-Wiltshire方程在相对参考系中对轨迹建模。通过使用火箭方程式确定了舰载平台和SmallSat的质量估计。将质量估计值与执行相同的地球同步卫星检查任务的单个不可加油的卫星的质量进行比较。从最小的delta-v轨迹和质量分析可以确定,在附近的轨道上使用可加燃料的SmallSats和运载平台比使用单个不可加燃料的卫星执行多个地球同步卫星检查更有效。

著录项

  • 作者

    Crockett, Derick.;

  • 作者单位

    Utah State University.;

  • 授予单位 Utah State University.;
  • 学科 Engineering Aerospace.;Engineering Mechanical.
  • 学位 M.S.
  • 年度 2013
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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