Three‐Dimensional Data Preparation and Immersive Mission‐Spanning Visualization and Analysis of Mars 2020 Mastcam‐Z Stereo Image Sequences

Author:

Paar Gerhard1ORCID,Ortner Thomas2ORCID,Tate Christian3,Deen Robert G.4ORCID,Abercrombie Parker4,Vona Marsette4,Proton Jon5ORCID,Bechtold Andreas67ORCID,Calef Fred4ORCID,Barnes Robert8ORCID,Koeberl Christian67ORCID,Herkenhoff Ken9ORCID,Hausrath Elisabeth M.10ORCID,Traxler Christoph2ORCID,Caballo Piluca1,Annex Andrew M.1112ORCID,Gupta Sanjeev8,Bell James F.13,Maki Justin4ORCID

Affiliation:

1. JOANNEUM RESEARCH Forschungsgesellschaft mbH Institute for Information and Communication Technology Graz Austria

2. VRVis Zentrum für Virtual Reality und Visualisierung Forschungs‐GmbH Vienna Austria

3. Department of Astronomy Cornell University Ithaca NY USA

4. NASA Jet Propulsion Laboratory (JPL) California Institute of Technology Pasadena CA USA

5. Opscode LLC San Diego CA USA

6. Austrian Academy of Sciences Vienna Austria

7. University of Vienna Department of Lithospheric Research Vienna Austria

8. Department of Earth Science & Engineering Imperial College London UK

9. U. S. Geological Survey Astrogeology Science Center Flagstaff AZ USA

10. Department of Geoscience University of Nevada Las Vegas NV USA

11. Division of Geological and Planetary Sciences California Institute of Technology Pasadena CA USA

12. Morton K. Blaustein Department of Earth & Planetary Sciences Johns Hopkins University Baltimore MD USA

13. School of Earth and Space Exploration Arizona State University Tempe AZ USA

Abstract

AbstractThe Mars 2020 Mastcam‐Z stereo camera investigation enables the generation of three dimension (3D) data products needed to visualize and analyze rocks, outcrops, and other geological and aeolian features. The Planetary Robotics Vision Processing framework “PRoViP” as well as the Instrument Data System on a tactical—sol‐by‐sol—timeframe generate 3D vision products, such as panoramas, distance maps, and textured meshes. Structure‐from‐motion used by the Advanced Science Targeting Toolkit for Robotic Operations (ASTTRO) “Landform” tool and long baseline stereo pipelines add to the 3D vision products' suite on various scales. Data fusion with textured meshes from satellite imagery and 3D data analysis and interpretation of the resulting large 3D data sets is realized by visualization assets like the Planetary Robotics Vision 3D Viewer PRo3D, the 3D Geographical Information System GIS CAMP (Campaign Analysis Mapping and Planning tool), the ASTTRO 3D data presentation and targeting tool, and the Mastcam‐Z planning tool Viewpoint. The pipelines' workflows and the user‐oriented features of the visualization assets, shared across the Mars 2020 mission, are reported. The individual role and interplay, complements and synergies of the individual frameworks are explained. Emphasis is laid on publicly available 3D vision data products and tools. A representative set of scientific use cases from planetary geology, aeolian activity, soil analysis and impact science illustrates the scientific workflow, and public data deployment modes are briefly outlined, demonstrating that 3D vision processing and visualization is an essential mission‐wide asset to solve important planetary science questions such as prevailing wind direction, soil composition, or geologic origin.

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Environmental Science (miscellaneous)

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