Preliminary mission profile of Hera's Milani CubeSat
arXiv:2102.01559 · doi:10.1016/j.asr.2020.12.034
Abstract
CubeSats offer a flexible and low-cost option to increase the scientific and technological return of small-body exploration missions. ESA's Hera mission, the European component of the Asteroid Impact and Deflection Assessment (AIDA) international collaboration, plans on deploying two CubeSats in the proximity of binary system 65803 Didymos, after arrival in 2027. In this work, we discuss the feasibility and preliminary mission profile of Hera's Milani CubeSat. The CubeSat mission is designed to achieve both scientific and technological objectives. We identify the design challenges and discuss design criteria to find suitable solutions in terms of mission analysis, operational trajectories, and Guidance, Navigation, & Control (GNC) design. We present initial trajectories and GNC baseline, as a result of trade-off analyses. We assess the feasibility of the Milani CubeSat mission and provide a preliminary solution to cover the operational mission profile of Milani in the close-proximity of Didymos system.
Accepted on Advances in Space Research
Cited by in corpus (6)
- The Dynamical State of the Didymos System Before and After the DART Impact
- The Hera Radio Science Experiment at Didymos
- Finding regions of bounded motion in binary asteroid environment using Lagrangian descriptors
- Delivery of DART Impact Ejecta to Mars and Earth: Opportunity for Meteor Observations
- Low-Energy Round-Trip Trajectories to Near-Earth Objects using Low Thrust
- Optimal Control and Neural Porkchop Analysis for Low-Thrust Asteroid Rendezvous Mission