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Optimal cooperative and non-cooperative peer-to-peer maneuvers for refueling satellites in circular constellations.

机译:为圆形星座中的卫星加油的最佳合作和非合作对等机动。

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摘要

On-orbit servicing (OOS) of space systems provides immense benefits by extending their lifetime, by reducing overall cost of space operations, and by adding flexibility to space missions. Refueling is an important aspect of OOS operations. The problem of determining the optimal strategy of refueling multiple satellites in a constellation, by expending minimum fuel during the orbital transfers, is challenging, and requires the solution of a large-scale optimization problem. The conventional notion about a refueling mission is to have a service vehicle visit all fuel-deficient satellites one by one and deliver fuel to them. A recently emerged concept, known as the peer-to-peer (P2P) strategy, is a distributed method of replenishing satellites with fuel. P2P strategy is an integral part of a mixed refueling strategy, in which a service vehicle delivers fuel to part (perhaps half) of the satellites in the constellation, and these satellites, in turn, engage in P2P maneuvers with the remaining satellites. During a P2P maneuver between a fuel-sufficient and a fuel-deficient satellite, one of them performs an orbital transfer to rendezvous with the other, exchanges fuel, and then returns back to its original orbital position. In terms of fuel expended during the refueling process, the mixed strategy outperforms the single service vehicle strategy, particularly with increasing number of satellites in the constellation. This dissertation looks at the problem of P2P refueling problem and proposes new extensions like the Cooperative P2P and Egalitarian P2P strategies. It presents an overview of the methodologies developed to determine the optimal set of orbital transfers required for cooperative and non-cooperative P2P refueling strategies. Results demonstrate that the proposed strategies help in reducing fuel expenditure during the refueling process.
机译:空间系统的在轨维修(OOS)通过延长其寿命,减少空间操作的总体成本以及增加空间飞行的灵活性,提供了巨大的好处。加油是OOS操作的重要方面。通过在轨道转移期间消耗最少的燃料来确定星座中为多个卫星加油的最佳策略的问题是具有挑战性的,并且需要解决大规模优化问题。关于加油任务的传统观念是让服务车辆一个个地拜访所有燃料不足的卫星,然后向它们运送燃料。最近出现的一种称为对等(P2P)策略的概念是一种为卫星补充燃料的分布式方法。 P2P策略是混合加油策略的组成部分,在该策略中,服务车辆向星座中的部分(可能是一半)卫星提供燃料,而这些卫星又与其余卫星进行P2P机动。在燃料充足和燃料不足的卫星之间进行P2P机动期间,它们中的一个执行轨道转移以与另一个相交,交换燃料,然后返回其原始轨道位置。就加油过程中消耗的燃料而言,混合策略的性能优于单一服务车辆的策略,尤其是在星座中增加卫星数量的情况下。本文着眼于P2P加油问题,并提出了新的扩展,如合作P2P和平等P2P策略。它概述了为确定合作和非合作P2P加油策略所需的最佳轨道转移集而开发的方法。结果表明,所提出的策略有助于减少加油过程中的燃料消耗。

著录项

  • 作者

    Dutta, Atri.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Aerospace.;Operations Research.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 196 p.
  • 总页数 196
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空、航天技术的研究与探索;运筹学;
  • 关键词

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