首页> 外文会议>IEEE Aerospace Conference >Spacecraft/rover hybrids for the exploration of small Solar System bodies
【24h】

Spacecraft/rover hybrids for the exploration of small Solar System bodies

机译:航天器/漫游者混合动力车,用于探索小型太阳系天体

获取原文

摘要

In this paper we present a mission architecture for the systematic and affordable in-situ exploration of small Solar System bodies (such as asteroids, comets, and Martian moons). At a general level, a mother spacecraft would deploy on the surface of a small body one, or several, spacecraft/rover hybrids, which are small (< 5 kg, ≈ 15 Watts), multi-faceted robots enclosing three mutually orthogonal flywheels and surrounded by external spikes (in particular, there is no external propulsion). By accelerating/decelerating the flywheels and by exploiting the low gravity environment, the hybrids would be capable of performing both long excursions (by hopping) and short traverses to specific locations (through a sequence of controlled “tumbles”). Their control would rely on synergistic operations with the mother spacecraft (where most of hybrids perception and localization functionalities would be hosted), which would make the platforms minimalistic and in turn the entire mission architecture affordable. Specifically, in the first part of the paper we present preliminary models and laboratory experiments for the hybrids, first-order estimates for critical subsystems, and a preliminary study for synergistic mission operations. In the second part, we tailor our mission architecture to the exploration of Mars' moon Phobos. The mission aims at exploring Phobos' Stickney crater, whose spectral similarities with C-type asteroids and variety of terrain properties make it a particularly interesting exploration target to address both high-priority science for the Martian system and strategic knowledge gaps for the future human exploration of Mars.
机译:在本文中,我们提出了一种任务体系结构,用于对太阳系小天体(例如小行星,彗星和火星卫星)进行系统且价格合理的原位探索。一般而言,母飞船会在一个小物体的表面上部署一个或多个飞船/漫游者混合动力车,它们体积小(<5千克,≈15瓦),多面机器人包围三个相互正交的飞轮,被外部尖峰包围(特别是没有外部推进力)。通过加速/减速飞轮并利用低重力环境,混合动力车将能够执行长途旅行(通过跳跃)和短程到特定位置(通过一系列受控的“滚转”)。他们的控制将取决于与母飞船的协同操作(将托管大多数混合动力感知和定位功能),这将使平台变得简约,从而使整个任务架构价格可承受。具体来说,在本文的第一部分中,我们介绍了混合动力车的初步模型和实验室实验,关键子系统的一阶估计以及协同任务操作的初步研究。在第二部分中,我们根据火星月球火卫一的探索量身定制我们的任务架构。该任务旨在探索火卫一的Stickney陨石坑,该陨石与C型小行星的光谱相似性以及各种地形特性使其成为解决火星系统的高优先科学和未来人类探索的战略知识缺口的特别有趣的探索目标。火星

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