Large Area High-Resolution 3D Mapping of the Von Kármán Crater: Landing Site for the Chang’E-4 Lander and Yutu-2 Rover

Author:

Tao Yu12ORCID,Muller Jan-Peter1ORCID,Conway Susan J.3,Xiong Siting4ORCID,Walter Sebastian H. G.2ORCID,Liu Bin5ORCID

Affiliation:

1. Mullard Space Science Laboratory, Department of Space and Climate Physics, University College London, Holmbury St Mary, Surrey RH5 6NT, UK

2. Planetary Sciences and Remote Sensing Group, Department of Earth Sciences, Freie Universität Berlin, Malteserstr. 74-100, 12249 Berlin, Germany

3. Laboratoire de Planétologie et Géodynamique, CNRS, UMR 6112, Université de Nantes, 44300 Nantes, France

4. Guangdong Laboratory of Artificial Intelligence and Digital Economy, Shenzhen 518107, China

5. State Key Laboratory of Remote Sensing Science, Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing 100101, China

Abstract

We demonstrate the creation of a large area of high-resolution (260 × 209 km2 at 1 m/pixel) DTM mosaic from the Lunar Reconnaissance Orbiter Camera (LROC) Narrow Angle Camera (NAC) images over the Chang’E-4 landing site at Von Kármán crater using an in-house deep learning-based 3D modelling system developed at University College London, called MADNet, trained with lunar orthorectified images and digital terrain models (DTMs). The resultant 1 m DTM mosaic is co-aligned with the Chang’E-2 (CE-2) and the Lunar Orbiter Laser Altimeter (LOLA)—SELenological and Engineering Explorer (SELENE) blended DTM product (SLDEM), providing high spatial and vertical congruence. In this paper, technical details are briefly discussed, along with visual and quantitative assessments of the resultant DTM mosaic product. The LROC NAC MADNet DTM mosaic was compared with three independent DTM datasets, and the mean differences and standard deviations are as follows: PDS photogrammetric DTM at 5 m grid-spacing had a mean difference of −0.019 ± 1.09 m, CE-2 DTM at 20 m had a mean difference of −0.048 ± 1.791 m, and SLDEM at 69 m had a mean difference of 0.577 ± 94.940 m. The resultant LROC NAC MADNet DTM mosaic, alongside a blended LROC NAC and CE-2 MADNet DTM mosaic and a separate LROC NAC, orthorectified image mosaic, are made publicly available via the ESA planetary science archive’s guest storage facility.

Funder

UKSA

STFC MSSL Consolidated

JPL

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

Reference55 articles.

1. The Japanese lunar mission SELENE: Science goals and present status;Kato;Adv. Space Res.,2008

2. The global image of the Moon obtained by the Chang’E-1: Data processing and lunar cartography;Li;Sci. China Earth Sci.,2010

3. Overall scheme and on-orbit images of Chang’E-2 lunar satellite CCD stereo camera;Zhao;Sci. China Technol. Sci.,2011

4. Scientific data and their release of Chang’E-1 and Chang’E-2;Zuo;Chin. J. Geochem.,2014

5. Chandrayaan-1: India’s first planetary science mission to the Moon;Goswami;Curr. Sci.,2009

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