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A comparative reliability analysis of ballistic deployments on binary asteroids

机译:二元小行星弹道部署的比较可靠性分析

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摘要

Small body missions can significantly benefit from deploying small landing systems onto the surface of the visited object. Despite the potential benefit that they may bring, deployments of landers in small body environments may entail significant mission design challenges. This paper thus addresses the potential of ballistic landing opportunities in binary asteroid moons from a mission design perspective, particularly focusing on reliability aspects of the trajectories. Two binaries that were previously identified as target bodies in several missions/proposals, Didymos and 1996 FG3, are considered in this paper. The dynamics near them are modeled by means of the Circular Restricted Three Body Problem (CR3BP), which provides a reasonable representation of a standard binary system. Natural landing trajectories that allow both minimum-velocity local-vertical touchdown and deployment from a safe distance are investigated. Coefficient of restitution values are used as a design parameter to compute the first touchdown speeds that ensure sufficient reliability of landing trajectories. A simple reliability index, which is derived via uncertainty ellipsoid from covariance analysis, is introduced to create a global reliability map across the asteroid surfaces. Assuming 3 sigma deployment errors on the order of 90 m and 2 cm/s, the results show that ballistic landing operations are likely to be successful for larger binary moons if the deployments target near equatorial regions within longitude range 320 degrees-20 degrees. It has also been shown that the deployments to smaller binary moons may require higher accuracy in navigation and deployment systems in their mothership, and/or closer deployment distances.
机译:通过将小型着陆系统部署到被访问物体的表面,小型机体任务可以显着受益。尽管它们可能带来潜在的好处,但在小型机体环境中部署着陆器可能会带来重大的任务设计挑战。因此,本文从任务设计的角度,特别是在轨迹的可靠性方面,探讨了在二元小行星卫星上弹道着陆的可能性。本文考虑了先前在多个任务/建议中被确定为目标机构的两个二进制文件Didymos和1996 FG3。通过圆形受限三体问题(CR3BP)对它们附近的动力学进行建模,该问题可合理表示标准的二元系统。研究了允许最小速度局部垂直着陆和从安全距离展开的自然着陆轨迹。恢复系数值用作设计参数,以计算确保着陆轨迹足够可靠的第一着陆速度。引入了一个简单的可靠性指数,该指数是通过协方差分析的不确定性椭球得出的,从而创建了整个小行星表面的全局可靠性图。假设3个sigma部署误差在90 m和2 cm / s的数量级,结果表明,如果部署的目标是经度范围在320度到20度之间的赤道附近,那么弹道着陆操作对于成功的双星卫星可能是成功的。还已经表明,向较小的双星卫星的部署可能要求其母舰的导航和部署系统具有更高的精度和/或更近的部署距离。

著录项

  • 来源
    《Acta astronautica》 |2019年第3期|308-316|共9页
  • 作者单位

    Grad Univ Adv Studies SOKENDA1, Dept Space & Astronaut Sci, Sagamihara, Kanagawa 2525210, Japan;

    Cranfield Univ, Ctr Autonomous & Cyber Phys Syst, Space Res Grp, Bedford MK43 0AL, England;

    Royal Observ Belgium, Reference Syst & Planetol, B-1180 Brussels, Belgium;

    Royal Observ Belgium, Reference Syst & Planetol, B-1180 Brussels, Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Binary asteroids; Landing; Astrodynamics; Trajectory design; Covariance analysis;

    机译:二元小行星着陆天体动力学轨迹设计协方差分析;

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