Changes for page Dachstein 2012
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... ... @@ -18,10 +18,10 @@ 18 18 |[[A.X MAT/EP>>doc:Dachstein 2012.A\.X MAT EP.WebHome]]|Medical monitoring tool – continuation of the Rio Tinto 2011 medical survey protocol|Medical Univ. of Innsbruck|Ulrich Luger 19 19 |[[Antipodes>>doc:Dachstein 2012.Antipodes.WebHome]]|Simulation of a two-landing teams on Mars scenario – command handover for a remote science experiment. |Kiwispace|Kiwispace New Zealand / OeWF (joint operations) 20 20 |[[AoudaX>>doc:Dachstein 2012.AoudaX Spacesuit.WebHome]]|Suit-subsystems check-out, field test of telemetry receiving station – subsystem commissioning & voice recognition.|Austrian Space Forum|Dr. Gernot Grömer 21 -| [[Asimov Jr. R3>>doc:Dachstein 2012.Asimov Jr\. R3.WebHome]]|Chassis and drive-train tests for the GLXP lunar rover prototype.|Part Time Scientists (Google Lunar X-Prize)|Daniel Ziegenberg22 -| [[Asset planning>>doc:Dachstein 2012.Asset Planning.WebHome]]|Field testing of a planning algorithm for traverse, consumables and hardware planning|Univ. of Innsbruck, Austria|Sebastian Hettrich & Alejandra Sans23 -| [[CRV / Cliffbot>>doc:Dachstein 2012.CRV - Cliffbot.WebHome]]|Concept rover for studying steep terrain and cliffs|Association Planète Mars|Alain Souchier24 -| [[ERAS C3 Simulator>>doc:Dachstein 2012.ERAS C3 Simulator.WebHome]]|A Mars-analog Command, Control and Communication (C3) infrastructure providing processing and communications capabilities|Mars Society Italy|Franco Carbognani21 +|Asimov Jr. R3|Chassis and drive-train tests for the GLXP lunar rover prototype.|Part Time Scientists (Google Lunar X-Prize)|Daniel Ziegenberg 22 +|Asset planning|Field testing of a planning algorithm for traverse, consumables and hardware planning|Univ. of Innsbruck, Austria|Sebastian Hettrich & Alejandra Sans 23 +|CRV / Cliffbot|Concept rover for studying steep terrain and cliffs|Association Planète Mars|Alain Souchier 24 +|ERAS C3 Simulator|A Mars-analog Command, Control and Communication (C3) infrastructure providing processing and communications capabilities|Mars Society Italy|Franco Carbognani 25 25 |EXOMARS/WISDOM|Ground validation for the ESA EXOMARS georadar under varying terrains|LATMOS/IPSL, France|Valérie Ciarletti 26 26 |ILEWG EuroMoonMars Dachstein|Support to human factor studies, following protocol tested during ILEWG EuroMoonMars campaign in Utah as well as sterile collection of samples for PCR and phylogenetic analysis Simulation of a two-landing teams on Mars scenario – command handover for a remote science experiment. A Mars-analog Command, Control and Communication (C3) infrastructure providing processing and communications capabilities|Vrije Universiteit Amsterdam|Exp. A: Rai Balwant, Exp. B: Luisa Rodrigues 27 27 |MAGMA 2|Operational tests and demonstration of the winning rover of the University Rover Challenge|Polish Mars Society|Sebastian Meszyński