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Interplanetary Trajectory Design for the Asteroid Robotic Redirect Mission Alternate Approach Trade Study

Raymond G. Merrill, Min Qu, Matthew A. Vavrina, Christopher A. Jones, Jacob A. Englander

Year
2014
Citations
11

Abstract

This paper presents mission performance analysis methods and results for the Asteroid Robotic Redirect Mission (ARRM) option to capture a free standing boulder on the surface of a 100 m or larger NEA. It details the optimization and design of heliocentric low-thrust trajectories to asteroid targets for the ARRM solar electric propulsion spacecraft. Extensive searches were conducted to determine asteroid targets with large pick-up mass potential and potential observation opportunities. Interplanetary trajectory approximations were developed in method based tools for Itokawa, Bennu, 1999 JU3, and 2008 EV5 and were validated by end-to-end integrated trajectories.

Keywords

AsteroidTrajectoryAstrobiologyInterplanetary spaceflightAerospace engineeringComputer scienceEngineeringPhysicsAstronomySolar wind

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