首页> 外文期刊>Acta astronautica >Dynamics of three-dimensional capture orbits from libration region analysis
【24h】

Dynamics of three-dimensional capture orbits from libration region analysis

机译:解放区分析的三维俘获轨道动力学

获取原文
获取原文并翻译 | 示例
           

摘要

Low-energy trajectories take advantage of the mutual action of multiple celestial bodies on the spacecraft, and can conclude with ballistic capture about the arrival body, thus allowing significant savings in terms of propellant consumption, if compared to more traditional transfers. Because of the chaotic nature of multibody environments, the design of low-energy trajectories with given constraints can be complex and it is often obtained after a long, iterative, and eventually computationally expensive process.This work is aimed at identifying a limited set of characteristic parameters related both to the time behavior of three-dimensional ballistic capture orbits and to some osculating orbit elements (i.e., inclination, semimajor axis, and eccentricity), relative either to the departure or to the arrival body. The analysis is performed using the linear expansion of the Hamiltonian equations of motion in the equilibrium region around the collinear libration point L-1 (or L-2), in the dynamical framework of the 3 dimensional circular restricted 3-body problem. A correlation among some Hamiltonian parameters in the equilibrium region and the trajectory osculating orbital elements at capture is established. This result is used to design missions with ballistic capture having required orbital parameters at the arrival planet and it provides a strategy to control the target orbital elements at capture by small thrust maneuvers at the equilibrium region. Because of the long flight time, the solar perturbation is considered in the analysis, and suitable launch dates for the ballistically captured missions are determined.
机译:低能轨迹利用了航天器上多个天体的相互作用,并且可以通过对到达体的弹道捕获来结束,因此,与更传统的转移相比,可以节省大量推进剂。由于多体环境的混乱性质,具有给定约束的低能轨迹的设计可能会很复杂,并且通常是在经过漫长的,迭代的,最终是昂贵的计算过程之后才能获得的。这项工作旨在确定一组有限的特征这些参数既与三维弹道捕获轨道的时间行为有关,又与相对于离去或到达物体的一些振荡轨道要素(即,倾角,半长轴和偏心率)相关。在3维圆形受限3体问题的动力学框架中,使用在共线解放点L-1(或L-2)周围的平衡区域中的哈密顿运动方程的线性展开进行分析。建立了平衡区的某些哈密顿量参数与捕获时的轨迹密切轨道元素之间的相关性。该结果用于设计具有在到达行星处具有所需轨道参数的弹道捕获的任务,并且它提供了一种通过在平衡区域进行小推力机动来控制捕获时的目标轨道元素的策略。由于飞行时间长,因此在分析中考虑了太阳干扰,并确定了用于弹道捕获任务的合适发射日期。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号