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AAE 450 – Spacecraft Design 1 Solar Power & Docking Options Eric Gustafson 1/18/2005 Power group & docking sub-committee Solar power and autonomous docking possibilities
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AAE 450 – Spacecraft Design Solar Power Reliable and proven source of power Mass scales approximately linearly with power Description Power near Earth (kW) Power near Mars (35% Earth) (kW) Mass (kg) Volume (m^3) Array Area (m^2) ISS PV Module 289.83710 750 Mars DRM 3010.53842.54.417719 Mars DRM 51.810481.289203.5 ISS scaled 802811000 2142.9 Mars DRM scaled 14.352500~3.68581.4
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AAE 450 – Spacecraft Design Autonomous Docking Can we dock autonomously in Martian orbit? Large communication Delay between Earth & Mars Russian Soyuz and Progress vehicles have shown autonomous docking capability with the ISS Is autonomous docking in Earth orbit without a comm. link to the ground proof of capability of autonomous Martian docking? Issues: Complexity and reliability vs. cost (mass) savings Soyuz has had to use manual override once (out of 14)
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AAE 450 – Spacecraft Design Solar Power Mass Trends …(backup section)
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AAE 450 – Spacecraft Design References Human Spaceflight, Larson and Pranke http://www.braeunig.us/space/specs/soyuz.htm NASA Mars Design Reference Mission http://exploration.jsc.nasa.gov/marsref/contents.html http://space.kursknet.ru/cosmos/english/other/siss.sht
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