Development of a Cold Gas Propulsion System for the ... - SSL - MIT

Development of a Cold Gas Propulsion System for the ... - SSL - MIT Development of a Cold Gas Propulsion System for the ... - SSL - MIT

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Works Cited [1] National Aeronautics and Space Administration, "Surveyor Program Results," NASA SP-184, Washington, DC, 1969. [2] Lanford, E. R., "Unique Abilities of Hopper Spacecraft to Enable National Objectives for Solar System Exploration," S.M. Thesis, Engineering Systems Division & Department of Aeronautics and Astronautics, Massachusetts Institute of Technology, Cambridge, MA, 2011. [3] Cunio, P. M., et al., "Options in the Solar System for Planetary Surface Exploration via Hopping," 2011 IEEE Aerospace Conference, Big Sky, MT, 2011. [4] Cohanim, B. E., et al., "Small Lunar Exploration and Delivery System Concept," AIAA SPACE 2009 Conference & Exposition, Pasadena, CA, 2009. [5] X PRIZE Foundation, "About the Google Lunar X PRIZE," Google Lunar X PRIZE, 2011, URL: http:// www.googlelunarxprize.org/lunar/about-the-prize [cited 15 Feb. 2011]. [6] "Armadillo Aerospace Qualifies For Lunar Prize," AviationWeek.com, 16 Sep. 2009, URL: http:// www.aviationweek.com/aw/generic/story_channel.jsp?channel=space&id=news/ SCORPIUS091609.xml [cited 15 Feb. 2011]. [7] "Masten and Armadillo Claim Lunar Lander Prizes," NASA Office of the Chief Technologist, 2 Nov. 2009, URL: http://www.nasa.gov/offices/oct/early_stage_innovation/centennial_challenges/ cc_ll_feature_lvl2.html [cited 28 Mar. 2011]. [8] National Aeronautics and Space Administration, "GPN-2000-000215 - Lunar Landing Research Vehicle in Flight," GRIN: Great Images in NASA, 1964, URL: http://grin.hq.nasa.gov/ABSTRACTS/ GPN-2000-000215.html [cited 15 Feb. 2011]. [9] Matranga, G. J., Ottinger, C. W., Jarvis, C. R., and Gelzer, D. C., "Unconventional, Contrary, and Ugly: The Lunar Landing Research Vehicle," Monographs in Aerospace History #35, National Aeronautics and Space Administration, NASA SP-2004-4535, Washington, DC, 2005. 122

[10] Bryant, K. M., Knight, C. J., and Hurtz, R. J., "Planetary Lander Vehicles Utilizing LEAP Technology," 30th AIAA/ASME/SAE/ASEE Joint Propulsion Conference, Indianapolis, 1994. [11] Nishioka, O., "NASA Ames Hover Test Vehicle Flight Test," NASA Ames Images and Video, 12 Nov. 2008, URL: http://www.nasa.gov/centers/ames/multimedia/images/2008/nasa-ames-lunar-lander- flighttest.html [cited 15 Feb. 2011]. [12] Coulter, D., "Lunar Lander Floats on Electric-blue Jets," Science@NASA Headline News, 15 Oct. 2009, URL: http://science.nasa.gov/science-news/science-at-nasa/2009/15oct_lunarlander/ [cited 15 Feb. 2011]. [13] Gundy-Burlet, K., Schumann, J., Menzies, T., and Barrett, T., "Parametric Analysis of a Hover Test Vehicle using Advanced Test Generation and Data Analysis," AIAA Infotech@Aerospace Conference and AIAA Unmanned.Unlimited Conference, Seattle, 2009. [14] Chavers, D.G., et al., "Robotic Lunar Landers for Science and Exploration," 7th International Planetary Probe Workshop (IPPW-7), Barcelona, 2010. [15] Morring Jr., F., "Peroxide Phase," Aviation Week & Space Technology, Vol. 173, No. 2, 10 Jan. 2011, p. 21. [16] Hendry IV, M. L., et al., "LEAPFROG: Lunar Entry and Approach Platform For Research On Ground," AIAA Infotech@Aerospace 2007 Conference and Exhibit, Rohnert Park, CA, 2007. [17] Cunio, P. M., et al., "Initial Development of an Earth-Based Prototype for a Lunar Hopper Autonomous Exploration System," AIAA SPACE 2009 Conference & Exposition, Pasadena, CA, 2009. [18] Middleton, A. J., "Modeling and Vehicle Performance Analysis of Earth and Lunar Hoppers," S.M. Thesis, Department of Aeronautics and Astronautics, Massachusetts Institute of Technology, Cambridge, MA, 2010. [19] Meetin, R. J. and Seifert, H. S., "Propulsion Dynamics of Lunar Hoppers," Journal of Spacecraft and Rockets, Vol. 11, No. 12, 1974, pp. 852-856. 123

Works Cited<br />

[1] National Aeronautics and Space Administration, "Surveyor Program Results," NASA SP-184,<br />

Washington, DC, 1969.<br />

[2] Lan<strong>for</strong>d, E. R., "Unique Abilities <strong>of</strong> Hopper Spacecraft to Enable National Objectives <strong>for</strong> Solar <strong>System</strong><br />

Exploration," S.M. Thesis, Engineering <strong>System</strong>s Division & Department <strong>of</strong> Aeronautics and<br />

Astronautics, Massachusetts Institute <strong>of</strong> Technology, Cambridge, MA, 2011.<br />

[3] Cunio, P. M., et al., "Options in <strong>the</strong> Solar <strong>System</strong> <strong>for</strong> Planetary Surface Exploration via Hopping,"<br />

2011 IEEE Aerospace Conference, Big Sky, MT, 2011.<br />

[4] Cohanim, B. E., et al., "Small Lunar Exploration and Delivery <strong>System</strong> Concept," AIAA SPACE 2009<br />

Conference & Exposition, Pasadena, CA, 2009.<br />

[5] X PRIZE Foundation, "About <strong>the</strong> Google Lunar X PRIZE," Google Lunar X PRIZE, 2011, URL: http://<br />

www.googlelunarxprize.org/lunar/about-<strong>the</strong>-prize [cited 15 Feb. 2011].<br />

[6] "Armadillo Aerospace Qualifies For Lunar Prize," AviationWeek.com, 16 Sep. 2009, URL: http://<br />

www.aviationweek.com/aw/generic/story_channel.jsp?channel=space&id=news/<br />

SCORPIUS091609.xml [cited 15 Feb. 2011].<br />

[7] "Masten and Armadillo Claim Lunar Lander Prizes," NASA Office <strong>of</strong> <strong>the</strong> Chief Technologist, 2 Nov.<br />

2009, URL: http://www.nasa.gov/<strong>of</strong>fices/oct/early_stage_innovation/centennial_challenges/<br />

cc_ll_feature_lvl2.html [cited 28 Mar. 2011].<br />

[8] National Aeronautics and Space Administration, "GPN-2000-000215 - Lunar Landing Research<br />

Vehicle in Flight," GRIN: Great Images in NASA, 1964, URL: http://grin.hq.nasa.gov/ABSTRACTS/<br />

GPN-2000-000215.html [cited 15 Feb. 2011].<br />

[9] Matranga, G. J., Ottinger, C. W., Jarvis, C. R., and Gelzer, D. C., "Unconventional, Contrary, and Ugly:<br />

The Lunar Landing Research Vehicle," Monographs in Aerospace History #35, National Aeronautics<br />

and Space Administration, NASA SP-2004-4535, Washington, DC, 2005.<br />

122

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