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Mars OASIS (Mars Operational Agricultural System for In-Situ Specialization) System Reference ManualIn order to enable long term habitation on planetary surfaces, a means of sustainable food production must be developed. Addressing this need for surface habitats on Mars, the MarsOASIS team has developed a concept for a Martian surface greenhouse for unmanned crop production research as a proof of concept for larger scale food production facilities for manned surface missions. Utilizing in-situ resources such as the Martian atmosphere, sunlight, and UV-C radiation, the greenhouse aims to provide a sustainable method of long-term food production requiring minimal consumable resources. The MarsOASIS system is capable of growing a full life cycle of Outredgeous lettuce with its autonomous control system designed for a unmanned environment, only requiring teleoperation in extreme circumstances. A reduced-scope prototype of MarsOASIS is being developed to test technologies such as a natural/artificial hybrid lighting system, a closed water recycling system, remote teleoperation, and fully autonomous monitoring and control of the greenhouse. The prototype is currently in the final stages of design, with a full demonstration of plant life cycle testing set to occur in summer 2015. Results from this prototype demonstration will help quantify the feasibility of the innovative approaches seen in the MarsOASIS design.
Document ID
20230008045
Acquisition Source
Kennedy Space Center
Document Type
Contractor or Grantee Report
Authors
Asa Darnell
(University of Colorado Boulder Boulder, Colorado, United States)
Joe Tanner
(University of Colorado Boulder Boulder, Colorado, United States)
Jordan Holquist
(University of Colorado Boulder Boulder, Colorado, United States)
Heather Hava
(University of Colorado Boulder Boulder, Colorado, United States)
Daniel Zukowski
(University of Colorado Boulder Boulder, Colorado, United States)
Christine Fanchiang
(University of Colorado Boulder Boulder, Colorado, United States)
Lizzie Lombardi
(University of Colorado Boulder Boulder, Colorado, United States)
Dr. Bill Liggett
(University of Colorado Boulder Boulder, Colorado, United States)
Christine Chamberlain
(University of Colorado Boulder Boulder, Colorado, United States)
Kier Fortier
(University of Colorado Boulder Boulder, Colorado, United States)
Alex Wassenberg
(University of Colorado Boulder Boulder, Colorado, United States)
Henna Jethani
(University of Colorado Boulder Boulder, Colorado, United States)
Brennan Borlaug
(University of Colorado Boulder Boulder, Colorado, United States)
Aastha Srivastava
(University of Colorado Boulder Boulder, Colorado, United States)
Anurag Azad
(University of Colorado Boulder Boulder, Colorado, United States)
Sai Sindhuja Thirumala
(University of Colorado Boulder Boulder, Colorado, United States)
Abhimanyu Ambastha
(University of Colorado Boulder Boulder, Colorado, United States)
Chaitanya Soma
(University of Colorado Boulder Boulder, Colorado, United States)
Divya Sridhar
(University of Colorado Boulder Boulder, Colorado, United States)
John Marino
(University of Colorado Boulder Boulder, Colorado, United States)
Daniel Case
(University of Colorado Boulder Boulder, Colorado, United States)
Paul Guerrie
(University of Colorado Boulder Boulder, Colorado, United States)
Date Acquired
May 23, 2023
Publication Date
June 11, 2015
Subject Category
Lunar and Planetary Science and Exploration
Life Sciences (General)
Engineering (General)
Funding Number(s)
WBS: 089407
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
NASA Technical Management
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