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Feasibility of Capturing and Returning Small Near-Earth Asteroids

John Brophy, R. Gershman, Damon Landau, James E. Polk, Chris Porter, Don Yeomans, Carlton Allen, Willie Williams, E. Asphaug

Year
2011
Citations
10

Abstract

This paper describes an investigation into the tech nological feasibility of finding, characterizing, robotically capturing, and returnin g an entire Near-Earth Asteroid (NEA) to the International Space Station (ISS) for scientific in vestigation, evaluation of its resource potential, determination of its internal structure and other a spects important for planetary defense activities, and to serve as a testbed for human operations in t he vicinity of an asteroid. Reasonable projections suggest that several dozen candidates N EAs in the size range of interest (~2-m diameter) will be known before the end of the decad e from which a suitable target could be selected. The conceptual mission objective is to r eturn a ~10,000-kg asteroid to the ISS in a total flight time of approximately 5 years using a single Evolved Expendable Launch Vehicle. Preliminary calculations indicate that this could b e accomplished using a solar electric propulsion (SEP) system with high-power Hall thrusters and a maximum power into the propulsion system of

Keywords

AsteroidPropulsionAstrobiologyAerospace engineeringTestbedSolar SystemIon thrusterSpace explorationRange (aeronautics)Electrically powered spacecraft propulsion

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