利用原地巨石自主建造月球基础设施

Jonas Walther, R. Johns, H. Kolvenbach, V. Bickel, Marco Hutter
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引用次数: 0

摘要

在月球表面建立人类的长期存在需要大量的基础设施。原地资源利用(ISRU)是确保此类建设可行性的基本方法。在这里,我们研究了利用未经加工的月球巨石和自主机器人挖掘机建造防爆盾牌的可行性,这是月球基础设施的一个实例。首先,我们估算了建造防爆盾段所需的未加工材料的体积。其次,我们利用 LRO NAC 图像和巨石大小-频率分布规律,量化了两个勘探区(位于沙克勒顿-亨森连接脊和阿里斯塔尔丘高原火成碎屑沉积区)的可用巨石数量。此外,我们还展示了一种依赖于占卜者岩石丰度数据的替代方法。第三,我们使用路径规划算法来推算收集当地材料和建造防爆盾构构件所需的距离、能量和时间。我们的结果表明,与其他 ISRU 建造方法相比,我们的建造方法所需的能量要少两个数量级,同时还能保持现实的任务时间和有效载荷能力余量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Autonomous construction of lunar infrastructure with in-situ boulders
Significant infrastructure is required to establish a long-term presence of humans on the lunar surface. In-situ resource utilization (ISRU) is a fundamental approach to ensure the viability of such construction. Here, we investigate the feasibility of constructing blast shields as one example of lunar infrastructure using unprocessed lunar boulders and an autonomous robotic excavator. First, we estimate the volume of unprocessed material required for the construction of blast shield segments. Secondly, we quantify the amount of available boulders in two exploration zones (located at the Shackleton-Henson Connecting Ridge and the Aristarchus Plateau pyroclastic deposit) using LRO NAC images and boulder size-frequency distribution laws. In addition, we showcase an alternative approach that relies on Diviner rock abundance data. Thirdly, we use a path planning algorithm to derive the distance, energy, and time required to collect local material and construct blast shield elements. Our results show that our construction method requires two orders of magnitudes less energy than alternative ISRU construction methods, while maintaining realistic mission time and payload capacity margins.
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