首页> 外文会议>International Astronautical Congress >HUMAN EXPLORATION OF THE SOLAR SYSTEM SYMPOSIUM (A5) Joint session on Human and Robotic Partnerships to Realize Human Spaceflight Goals (3-B3.6):NEW TECHNOLOGIES OF MOON EXPLORATION BY HUMAN AND ROBOT
【24h】

HUMAN EXPLORATION OF THE SOLAR SYSTEM SYMPOSIUM (A5) Joint session on Human and Robotic Partnerships to Realize Human Spaceflight Goals (3-B3.6):NEW TECHNOLOGIES OF MOON EXPLORATION BY HUMAN AND ROBOT

机译:人力系统研讨会(A5)联合会议关于人类和机器人伙伴关系的联合会议,实现人类航天目标(3-B3.6):人类和机器人的月亮勘探新技术

获取原文

摘要

Traditional methods for the study and exploration of the Moon can be reduced to the implementation of the proposals missions apart - or robotic (without human intervention) or manned. This leads either to ensure that the results obtained from these missions are, on the one hand, private (local) character. On the other hand, the results in the case of manned missions costing organizers missions quite expensive. The paper examines the concept of large-scale exploration of the moon at the same time and with the participation of human and robot. We consider several scenarios implementation of such complex missions. Author proposed range of robotic and manned assets, which allows realizing the proposed concept, the basic requirements for these facilities. It is shown that the proposed concept allows to implement a program of study and exploration of the moon on a new level, has a number of important advantages with respect to the separate program of automatic and manned missions. In particular, the implementation of the proposed technology results obtained during missions to the Moon will be comprehensive in nature,and the efficacy and safety of manned missions to grow substantially.
机译:用于研究和探索月球的传统方法可以减少到实施提案任务 - 或机器人(没有人为干预)或载人。这导致了确保从这些任务获得的结果一方面是私人(本地)的特征。另一方面,载人特派团的结果成本调整机构任务相当昂贵。本文在人类和机器人的参与下,审查了对月亮大规模勘探的概念。我们考虑了多种情况实现了这种复杂的任务。作者提出的机器人和载人资产范围,允许实现拟议的概念,这些设施的基本要求。结果表明,拟议的概念允许在新的水平上实施月亮的学习和探索,对自动和载人任务的单独程序具有许多重要的优势。特别是,在使月球任务中获得的提出的技术结果的实施将全面地本质上是全面的,有载人任务的功效和安全性大幅增长。

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