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Concept for a Radioisotope Powered Dual Mode Lunar Rover

机译:放射性同位素的概念支持双模月球流动站

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Over three decades ago, the Apollo missions manifestly demonstrated the value of a lunar rover to expand the exploration activities of lunar astronauts. The stated plan of the new Vision for Space Exploration to establish a permanent presence on the moon in the next decades gives new impetus to providing long range roving and exploration capability in support of the siting, construction, and maintenance of future human bases. The incorporation of radioisotope power systems and telerobotic capability in the design has the potential to significantly expand the capability of such a rover, allowing continuous operation during the full lunar day/night cycle, as well as enabling exploration in permanently shadowed regions that may be of interest to humans for the resources they may hold. This paper describes a concept that builds on earlier studies originated in the Apollo program for a Dual Mode (crewed and telerobotic) Lunar Roving Vehicle (DMLRV). The goal of this vehicle would be to provide a multipurpose infrastructure element and remote science platform for the exploration of the moon. The DMLRV would be essential for extending the productivity of human exploration crews, and would provide a unique capability for diverse long-range, long-duration science exploration between human visits. With minimal reconfiguration this vehicle could also provide the basic platform to support a range of site survey and preparation activities in anticipation of the establishment of a permanent human presence on the moon. A conceptual design is presented for the DMLRV, including discussion of mission architecture, vehicle performance, representative science payload accommodation, and equipment and crew radiation considerations.
机译:三十年前,阿波罗任务明显地表明了月级流动站的价值,以扩大月球宇航员的勘探活动。在未来几十年中建立永久性存在的空间探索的新愿景计划为提供了新的推动力,以支持未来人类基地的选址,建设和维护提供了新的推动力。在设计中加入放射性同位素电力系统和耳毒能力具有显着扩展这种流动站的能力,允许在整个农历日/夜周期期间连续运行,以及在可能是永久阴影区域的探索对他们可能持有的资源的人类兴趣。本文介绍了一种在早期研究的概念,起源于Apollo程序,用于双模(船员和托管)月球巡航车辆(DMLRV)。该车辆的目标是为探索月球提供多用途基础设施元素和远程科学平台。该DMLRV将是延长人类探索人员的生产力至关重要,将为人类之间的互访多样远距离,长时间的科学探索一种独特的能力。随着最小的重新配置,这款车辆还可以提供基本平台,以支持一系列现场调查和预期在月球上建立永久性人类的制备活动。为DMLRV提供了一种概念设计,包括使命架构,车辆性能,代表性科学有效载荷和设备和船员辐射考虑的讨论。

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