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Mars orbit insertion via ballistic capture and aerobraking

机译:火星轨道插入通过弹道捕获和充气机

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摘要

A novel Mars orbit insertion strategy that combines ballistic capture and aerobraking is presented. Mars ballistic capture orbits that neglect the aerodynamics are first generated, and are distilled from properly computed stable and unstable sets by using a pre-established method. A small periapsis maneuver is implemented at the first close encounter to better submit a post-capture orbit to the aerobraking process. An adhoc patching point marks the transition from ballistic capture to aerobraking, from which an exponential model simulating the Martian atmosphere and a box-wing satellite configuration are considered. A series of apoapsis trim maneuvers are then computed by targeting a prescribed pericenter dynamic pressure. The aerobraking duration is then estimated using a simplified two-body model. Yaw angle tuning cancels the inclination deflections owing to out-of-plane perturbation from the Sun. A philosophy combining in-plane and out-of-plane dynamics is proposed to simultaneously achieve the required semi-major axis and inclination. Numerical simulations indicate that the developed method is more efficient in terms of the fuel consumption, insertion safety, and flexibility when compared with other state-of-the-art insertion strategies.
机译:一种新型的火星轨道插入策略相结合的弹道导弹捕捉和航空刹车呈现。火星弹道捕获轨道即忽视空气动力学首先生成,并且通过使用预先建立的方法从适当的计算稳定和不稳定集蒸馏。小拱点动作在第一近距离接触来实现,以更好地提交捕获轨道后对航空刹车过程。自组织修补点标记从弹道捕获到航空刹车的过渡,从该指数模型模拟火星大气和箱翼卫星配置被考虑。一系列远拱点修剪演习然后通过靶向规定近心动态压力来计算。然后,将航空刹车持续时间使用简化的二体模型估算。偏航角调谐消除来自太阳由于外的平面扰动倾斜的偏转甲理念结合在面内和面外动力学提出了同时达到所要求的半长轴和倾斜度。数值仿真表明,当与国家的最先进的其他插入方案相比所提出的方法是在燃料消耗,插入安全性和灵活性方面更有效。

著录项

  • 来源
    《Astrodynamics》 |2021年第2期|167-181|共15页
  • 作者

    Zong-Fu Luo; Francesco Topputo;

  • 作者单位

    School of Astronomy and Space Science Nanjing University Nanjing 210023 China|School of Systems Science and Engineering Sun Yat-sen University Guangzhou 510006 China;

    Department of Aerospace Science and Technology Politecnico di Milano Milano 20;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ballistic capture; aerobraking; Mars orbit insertion;

    机译:弹道捕获;气球;火星轨道插入;

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