考试(生物学)
发掘
试验场地
自治
地质学
天体生物学
采矿工程
岩土工程
物理
政治学
古生物学
法学
作者
Joseph M. Cloud,Andrew J. Nick,Bradley C. Buckles,Kyle L. Dixon,Thomas Müller,Victoria V. Ortega,Jonathan D. H. Smith,Casey J. Clark,Jeffrey E. Dyas,Elizabeth L. Zhang,Kurt W. Leucht,Robert P. Mueller,Jason M. Schuler
标识
DOI:10.1109/aero63441.2025.11068688
摘要
NASA's Artemis program aims to send humans to the lunar south pole (LSP), requiring in-situ resource utilization (ISRU) technologies like the ISRU Pilot Excavator (IPEx) to perform site preparation and resource extraction. The LSP is a uniquely challenging environment, characterized by low solar angles and long shadows that disrupt vision-based autonomy. To approximate these conditions, we developed the IPEx autonomy test-site, a 21.3×33.5 m enclosed area for testing excavation technologies under simulated LSP conditions. The test-site is equipped with granular material, scattered rocks, and a full-scale lander model. Strategically placed high-power lights replicate the low solar angles, while a motion capture system offers ground truth robot poses. Additional site awareness cameras provide complete coverage of the test area for monitoring. The test-site has been utilized to evaluate performance of both autonomous navigation and excavation tasks. Finally, we discuss initial results obtained from test runs, calculations compared against a digital simulation, features of the terrain that mimic the visual properties of lunar regolith, and challenges observed.
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