...
首页> 外文期刊>Acta astronautica >Identification of new orbits to enable future mission opportunities for the human exploration of the Martian moon Phobos
【24h】

Identification of new orbits to enable future mission opportunities for the human exploration of the Martian moon Phobos

机译:确定新的轨道,为人类对火星月球火卫一的探索提供未来的任务机会

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

One of the paramount stepping stones towards NASA's long-term goal of undertaking human missions to Mars is the exploration of the Martian moons. Since a precursor mission to Phobos would be easier than landing on Mars itself, NASA is targeting this moon for future exploration, and ESA has also announced Phootprint as a candidate Phobos sample-and-return mission. Orbital dynamics around small planetary satellites are particularly complex because many strong perturbations are involved, and the classical circular restricted three-body problem (R3BP) does not provide an accurate approximation to describe the system's dynamics. Phobos is a special case, since the combination of a small mass-ratio and length-scale means that the sphere-of-influence of the moon moves very close to its surface. Thus, an accurate nonlinear model of a spacecraft's motion in the vicinity of this moon must consider the additional perturbations due to the orbital eccentricity and the complete gravity field of Phobos, which is far from a spherical-shaped body, and it is incorporated into an elliptic R3BP using the gravity harmonics series expansion (ER3BP-GH). In this paper, a showcase of various classes of non-keplerian orbits is identified and a number of potential mission applications in the Mars-Phobos system are proposed: these results could be exploited in upcoming unmanned missions targeting the exploration of this Martian moon. These applications include: low-thrust hovering and orbits around Phobos for close-range observations; the dynamical substitutes of periodic and quasi-periodic Libration Point Orbits in the ER3BP-GH to enable unique lowcost operations for space missions in the proximity of Phobos; their manifold structure for high-performance landing/take-off maneuvers to and from Phobos' surface and for transfers from and to Martian orbits; Quasi-Satellite Orbits for long-period station keeping and maintenance. In particular, these orbits could exploit Phobos' occulting bulk and shadowing wake as a passive radiation shield during future manned flights to Mars to reduce human exposure to radiation, and the latter orbits can be used as an orbital garage, requiring no orbital maintenance, where a spacecraft could make planned pit-stops during a round-trip mission to Mars. (C) 2015 IAA. Published by Elsevier Ltd. All rights reserved.
机译:对NASA进行人类对火星任务的长期目标而言,最重要的踏脚石之一就是对火星卫星的探索。由于对火卫一的先验任务比登陆火星本身要容易,所以美国宇航局将月球瞄准未来的探索,而欧洲航天局还宣布将Phootprint作为火卫一的样本取回任务。小型行星状卫星周围的轨道动力学特别复杂,因为其中涉及许多强扰动,并且经典的圆形受限三体问题(R3BP)无法提供精确的近似值来描述系统的动力学。火卫一是一个特例,因为小质量比率和长度比例的组合意味着月球的影响范围非常靠近其表面。因此,对于航天器在月球附近的运动的精确非线性模型,必须考虑由于轨道偏心和火卫一的完整重力场而产生的附加扰动,该中心远离球形物体,并将其结合到椭圆R3BP使用重力谐波级数展开(ER3BP-GH)。在本文中,确定了各种非开普勒轨道的展示,并提出了在火星-霍普斯系统中许多潜在的任务应用:这些结果可用于即将进行的针对这一火星月球的探索的无人飞行任务中。这些应用包括:低推力盘旋和围绕火卫一的轨道进行近距离观测; ER3BP-GH中周期性和准周期性Libration Point轨道的动态替代品,可为火卫一附近的太空飞行任务提供独特的低成本操作;它们的流形结构,用于进出火卫一表面的高性能起降机动以及进出火星轨道的转移;准卫星轨道,用于长期的站点维护和维护。尤其是,这些轨道可以在未来的载人火星飞行期间利用火卫一的隐匿性大块和阴影尾迹作为被动辐射防护罩,以减少人类受到辐射的暴露,而后者的轨道可以用作轨道车库,不需要轨道维护,在这种情况下一架太空船可以在前往火星的往返任务中进行计划的进站。 (C)2015年IAA。由Elsevier Ltd.出版。保留所有权利。

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