Changes for page Amadee-24-SAMPLE
Last modified by Hermann Hinterhauser on 2024/07/03 19:04
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edited by Hermann Hinterhauser
on 2024/03/25 11:32
on 2024/03/25 11:32
edited by Hermann Hinterhauser
on 2024/03/25 11:42
on 2024/03/25 11:42
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... ... @@ -1,1 +1,1 @@ 1 -Amadee-24- Hort3Space1 +Amadee-24-RAMSES - Content
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... ... @@ -1,11 +1,13 @@ 1 1 === Details === 2 2 3 -|**Acronym**| Hort3Space4 -|**Description**| Anautomatedmultilevelcultivationprototype,equippedwithcultivationspecificfullspectrumLEDlights placedinsideasterilegrowroominanflatableself-erecting tentto evaluate cultivationperformances,supportingthe dietofthe crew5 -|**Principal Investigator (PI)**| LucaNardi ~| [[luca.nardi@enea.it>>mailto:luca.nardi@enea.it]]6 -|**Organisation** | ENEA-BiotechnologyLaboratory,CasacciaResearchCenter3 +|**Acronym**|RAMSES 4 +|**Description**|Fully autonomous multi-sensor-based helicopter system capable of taking off from a charging dock atop a Mars rover, then conducting aerial reconnaissance for operator-requested POI inspection or autonomous terrain mapping before landing back on the rover to recharge. 5 +|**Principal Investigator (PI)**|Martin Scheiber ~| [[Martin.Scheiber@aau.at>>mailto:Martin.Scheiber@aau.at]] 6 +|**Organisation** |Control of Networked Systems Group, Institute of Smart System Technologies, University of Klagenfurt 7 7 |**Co-Investigators**|((( 8 - 8 +Marim Faroun | [[mafaroun@edu.aau.at>>mailto:mafaroun@edu.aau.at]] 9 + 10 +Tanguy Gerniers | [[t1gerniers@edu.aau.at>>mailto:t1gerniers@edu.aau.at]] 9 9 ))) 10 10 11 11 === Summary === ... ... @@ -15,13 +15,13 @@ 15 15 [[image:ACT_manifest.png||height="266" width="399"]] 16 16 ))) 17 17 18 - Future long-termspace missionsandhumanhabitationonotherplanets suchasMarsrequire a controlledecologicallife-supportsystem.Itspurposeistobasicallyre-createapropermosphere,purifywaterdpossiblysowseedsforastronautstoeat.Theseprocessesare ensured byphotosyntheticalgaeandhigher plants inaso-called“biologicallifepportsystem”(BLSS).20 +In 2021, the first Uncrewed Aerial Vehicle (UAV) performed its first flight on Mars. With this flight, Ingenuity developed by NASA, proved that VTOL aircraft can operate under Martian conditions. However, furtherresearch and development is necessary to take out full advantage of flying vehicles during a Mars mission. 19 19 20 - Since theAMADEE-24 mission sitemimicsthe harshspace environment,itis theperfectlocationto test such systems.Here,productiveplantspeciesshallbegrownconsidering factorssuch astheabsenceof soil,shortageof water,limitedspaceavailable.TheexperimentHort3Spaceistherefore focusingon“microgreens”-leafyvegetables harvested asseedlings,highlyacceptableby consumersas “Ready-To-Eat” (RTE) food. They arehighlynutritious, hencean excellentsourceofvitaminsndantioxidants.22 +The Rover Aerial Mars Support and Exploration System (RAM-SES) is a technology system for future UAVs using an AI-based network to autonomously detect landing sites in Mars-like environments. With participation in AMADEE-24, RAMSES’s novel approach demonstrates the process of detecting visual points of interest, either scientifically or for safe UAV navigation. 21 21 22 -The aim ofthis experimentisto developand test innovative and autonomous cultivation systemsthatcangrowfreshfoodwiththe minimumhuman intervention.Thisway,supplytransportationforlong-termmissions can bereduced.24 +The expected outcome is to utilize an AI-based network togenerate a heat map for successfully detecting landing sites inthe mission area. Additionally, the system contains gener-ated pixel-wise maps and provides comprehensive and detaileddepictions of scientific points of interest in Mars-like environments. RAMSES evaluates data gathered by other robotic vehicles to create the aforementioned heat map and points of interest. In turn, this data can enhance the mission capabilities ofother teams to further demonstrate collaboration between experiments. 23 23 24 -To realize thisexperiment,a sterilegrowroomin aninflatableself-erecting tentwillbeusedtoevaluatecultivationperformancesin extremeenvironments,simulatingaplanetarybiological lifesupport system(BLSS). It will be abletosupportthe dietofthecrew members of the analoguemissionwithfreshandhighlynutritious,ready-to-eatvegetables.Additionally,theuse of automatedprocessesshallreduceanalogueastronaut’stimerequiredforcultivation task.26 +To achieve the defined experiment objectives within AMADEE-24,RAMSES focuses on evaluating data gathered by the SAMPLE experiment. With the help of the ground truth of the mission area data,we are able to compare the system’s pixel-wise map coordinates andimprove the precision of the location of notable features for scientific research in order to contribute to the advancement of scientificknowledge about the environment. In the context of collaborative experimentation, RAMSES shall be subjected to proof-of-concept teststhat aim to exhibit its capabilities in supporting AMADEE-24 andfuture missions. 25 25 26 26 27 27