Systems Engineering and Technology Considerations of a Mars Ascent Vehicle

* All authors contributed equally to this paper. Abstract— A Mars Ascent Vehicle (MAV) systems engineering study is underway to define the driving requirements, system architecture, major risks, and required technology developments to support the launch of a rock core sample to a specified delivery orbit for later retrieval and return to Earth. The proposed MAV would essentially be a small-scale launch vehicle, the first of its kind to be launched autonomously from another planet. The MAV would be a flight element of the proposed Mars Sample Return (MSR) campaign architecture, which currently assumes a 2018 launch of the sample caching mission and a 2024 (Earth) launch date of the MAV and lander, with arrival on Mars in 2025. After 9 months on the surface the MAV would be erected and launched to a specified delivery orbit. In the delivery orbit it would release its payload, a 5 kg sphere containing the rock core sample. An orbiter would rendezvous and capture the payload, returning it to Earth a year later.

[1]  C. P. Jones Automatic Fault Protection in the Voyager Spacecraft , 1979 .

[2]  J. F. Clawson Mars Pathfinder "common sense" mission assurance , 1998, 1998 IEEE Aerospace Conference Proceedings (Cat. No.98TH8339).

[3]  A. Sengupta,et al.  Mars Ascent Vehicle system studies and baseline conceptual design , 2012, 2012 IEEE Aerospace Conference.