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NASA planning for exploration mission 2 (EM-2) and accomplishing exploration objectives in the proving ground

机译:美国宇航局计划探索任务2(EM-2)并在试验场中实现探索目标

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NASA is leading a journey to Mars, expanding human presence further into the solar system, not just to explore, but to stay. Achieving sustained human presence in deep space requires development of systems that will overcome numerous challenges and a flexible strategy allowing for change and improvement as our science and technology advances in ways that we cannot predict today. NASA is actively developing capabilities that will enable humans to thrive beyond Earth for extended periods of time in a sustainable capacity in space and ultimately on the surface of Mars. Investments in initial capabilities will be leveraged and reused on the journey to Mars, enabling increasingly complex operations over time and exploration of more distant solar system destinations. The overall strategy is to provide a adaptable, incremental approach; identifying technologies and capabilities needing development and testing in the near-term during near-Earth operations before readiness to take the first humans to Mars and other deep-space destinations. This paper will discuss the refinement of Proving Ground Objectives as outlined in NASA's Journey to Mars (J2M) document and how these objectives are mapped to early missions, Exploration Mission - 1 (EM-1) and EM-2. The plans for EM-1 and EM-2 will be discussed in detail and shown how these missions satisfy parts of the Proving Ground Objectives and thereby demonstrate tangible, meaningful progress towards NASA's exploration goals. Further, the paper will discuss the near-term cislunar space mission plans and highlight the status of capabilities in development by NASA under the Space Launch System (SLS), Orion Multi-purpose Crew Vehicle and the Ground Systems Development and Operational (GSDO) programs. Finally, the paper will review the ability of the exploration architecture provides to support exploration payloads ranging from small cubesat class experiments to large, multi-ton co-manifested payloads, including opportunities for commercial and international.
机译:美国国家航空航天局(NASA)正在带领前往火星的旅程,将人类的存在进一步扩展到太阳系中,不仅是探索,而且是停留。实现人类在深空的持久存在,需要开发能够克服众多挑战的系统和灵活的战略,以便随着我们科学技术的发展以我们今天无法预测的方式进行变革和改进。美国国家航空航天局(NASA)正在积极开发能力,使人类能够在太空中以可持续的能力,并最终在火星表面上,在更长的时间内beyond壮成长。初始能力方面的投资将被利用并在前往火星的过程中得以重复利用,从而随着时间的推移而变得越来越复杂,并能够探索更遥远的太阳系目的地。总体战略是提供一种适应性的,渐进的方法;在准备将第一批人员带入火星和其他深空目的地之前,在近地操作期间确定需要在近期进行开发和测试的技术和能力。本文将讨论美国宇航局《火星之旅》(J2M)文件中概述的试验场目标的完善,以及如何将这些目标映射到早期任务-探索任务-1(EM-1)和EM-2。将详细讨论EM-1和EM-2的计划,并说明这些任务如何满足部分试验场目标,从而证明在实现NASA勘探目标方面的切实,有意义的进展。此外,本文还将讨论近期的月球太空任务计划,并着重介绍NASA在太空发射系统(SLS),猎户座多功能乘员车和地面系统开发与运营(GSDO)计划下的开发能力状况。 。最后,本文将回顾探索架构提供的支持能力,以支持探索有效载荷,从小型立方体级实验到大型,多吨级共同显示的有效载荷,包括商业和国际机会。

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