Medium resolution lunar topography: An updated view of the lunar surface from stereophotogrammetrically derived DTMs
Digital Terrain Models (DTMs) are essential for lunar exploration, supporting critical applications such as landing site selection,mission planning, and in situ resource utilization. This study presents a comprehensive reprocessing of the Kaguya Terrain Camera (TC) dataset using the NASA Ames Steropipeline to generate over 130,000 medium-resolution DTMs with nearly global lunar coverage to ±70°. We observed significant bowing in the DTMs derived using the publicly available interior orientation and have used a novel technique, in the planetary sciences, to re-estimate the boresight and eight-parameter distortion coefficients. Inter-DTM vertical alignment errors are also present due to spacecraft jitter and we present the methodology used to jitter correct the DTMs. DTMs are aligned to the Lunar Orbiter Laser Altimeter (LOLA) point cloud and absolute errors are mean centered to zero with a mean standard deviation of 24 meters. Leveraging advanced stereophotogrammetry techniques, updated sensor models, and rigorous alignment to the Lunar Orbiter Laser Altimeter (LOLA) dataset, we achieved horizontal accuracies inside the orthoimage resolution (mean of 30 meters per pixel) and 2-4 meters vertically. These high-quality DTMs serve as critical inputs for planetary science, engineering, and future lunar mission planning. The methods and insights gained from this large-scale processing effort establish a framework for automating DTM derivation on other planetary bodies.
Citation Information
| Publication Year | 2025 |
|---|---|
| Title | Medium resolution lunar topography: An updated view of the lunar surface from stereophotogrammetrically derived DTMs |
| DOI | 10.5194/isprs-archives-XLVIII-M-6-2025-197-2025 |
| Authors | Jason Laura, Oleg Alexandrov, Lauren Adoram-Kershner, Kirsten Bauck, Benjamin H Wheeler, Trent M. Hare |
| Publication Type | Conference Paper |
| Publication Subtype | Conference Paper |
| Index ID | 70279340 |
| Record Source | USGS Publications Warehouse |
| USGS Organization | Astrogeology Science Center |