Autonomous Multirobot Technologies for Mars Mining Base Construction and Operation
Jekan Thangavelautham, Aman Chandra, Erik Jensen

TL;DR
This paper proposes a robotic, solar-powered Mars water mining base utilizing automation and 3D printing, demonstrating significant efficiency and speed improvements for space resource extraction and export.
Contribution
It introduces a novel robotic and renewable energy-based design for a Mars water mining base, emphasizing automation and 3D printing to enhance feasibility.
Findings
Robotic construction reduces energy needs fivefold.
Automation speeds up base construction five times faster.
The proposed system enables efficient water export from Mars.
Abstract
Beyond space exploration, the next critical step towards living and working in space requires developing a space economy. One important challenge with this space-economy is ensuring the low-cost transport of raw materials from one gravity-well to another. The escape delta-v of 11.2 km/s from Earth makes this proposition very expensive. Transporting materials from the Moon takes 2.4 km/s and from Mars 5.0 km/s. Based on these factors, the Moon and Mars can become colonies to export material into this space economy. One critical question is what are the resources required to sustain a space economy? Water has been identified as a critical resource both to sustain human-life but also for use in propulsion, attitude-control, power, thermal storage and radiation protection systems. Water may be obtained off-world through In-Situ Resource Utilization (ISRU) in the course of human or robotic…
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Taxonomy
TopicsAstro and Planetary Science · Planetary Science and Exploration · Space Science and Extraterrestrial Life
