A lunar reconnaissance drone for cooperative exploration and high-resolution mapping of extreme locations
Abstract: An efficient characterization of scientifically significant locations is essential prior to the return of humans to the Moon. The highest resolution imagery acquired from orbit of south-polar shadowed regions and other relevant locations remains, at best, an order of magnitude larger than the characteristic length of most of the robotic systems to be deployed. This hinders the planning and successful implementation of prospecting missions and poses a high risk for the traverse of robots and humans, diminishing the potential overall scientific and commercial return of any mission. We herein present the design of a lightweight, compact, autonomous, and reusable lunar reconnaissance drone capable of assisting other ground-based robotic assets, and eventually humans, in the characterization and high-resolution mapping (~0.1 m/px) of particularly challenging and hard-to-access locations on the lunar surface. The proposed concept consists of two main subsystems: the drone and its service station. With a total combined wet mass of 100 kg, the system is capable of 11 flights without refueling the service station, enabling almost 9 km of accumulated flight distance. The deployment of such a system could significantly impact the efficiency of upcoming exploration missions, increasing the distance covered per day of exploration and significantly reducing the need for recurrent contacts with ground stations on Earth.
- ShadowCam, Seeing in the shadows—camera characteristics(Accessed on 01/May/2023) (2021). URL http://shadowcam.sese.asu.edu/about
- NASA Jet Propulsion Laboratory, Sample recovery helicopters(Accessed on 04/May/2023) (2023). URL https://mars.nasa.gov/msr/spacecraft/sample-recovery-helicopters/
- K. Valentine, Intuitive Machines and NASA finalize contract for extreme lunar mobility spacecraft(Accessed on 04/May/2023) (2021). URL https://www.intuitivemachines.com//post/intuitive-machines-and-nasa-finalize-contract-for-extreme-lunar-mobility-spacecraft
- doi:10.1061/9780784483374.014.
- A. Rocketdyne, In-space propulsion data sheet version 4.8.20(Accessed on 16/May/2023) (2020). URL https://satcatalog.s3.amazonaws.com/components/845/SatCatalog_-_Aerojet_Rocketdyne_-_MR-106L_22N_-_Datasheet.pdf?lastmod=20210710010020
- ISISpace, ISIS on board computer(Accessed on 17/May/2023) (2022). URL https://www.isispace.nl/product/on-board-computer/
- Safran, STIM377H(Accessed on 17/May/2023) (2022). URL https://www.sensonor.com/products/inertial-measurement-units/stim377h/
- I. Mercury Systems, 440 GB 3U VPX Rad-Tolerant SSDR(Accessed on 20/November/2022) (2022). URL https://www.mrcy.com/products/data-storage-and-transfer/space-data-recorders/model-rh34402
- OrbitFab, RAFTI Block 2. Orbit Fab–gas stations in space(Accessed on 20/November/2022) (2022). URL https://www.orbitfab.com/raftib2
Paper Prompts
Sign up for free to create and run prompts on this paper using GPT-5.
Top Community Prompts
Collections
Sign up for free to add this paper to one or more collections.