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From version < 3.1 >
edited by Barry Bishop
on 2019/08/17 14:22
To version < 11.1 >
edited by Dominik Rabl
on 2021/10/27 11:03
>
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1 +XWiki.drabl
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27 27  Using the photogrammetry technique known as structure from motion (SfM), where 2-D images are transformed into 3-D topographic surfaces high-resolution topographic imagery will be obtained.
28 28  
29 29  The main payload will be one of the following: either a global shutter camera for photogrammetry survey and a multi-spectral camera for surface analysis. Additionally, the drone carries a sensor array of a pressure, a hygrometric and a temperature sensor.
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31 +
32 +=== Experiment Data ===
33 +
34 +|=(% style="width: 127px;" %)Date|=(% style="width: 1510px;" %)Files
35 +|(% style="width:127px" %)[[2021-10-15>>https://mission.oewf.org/archive_downloads/amadee20/AEROSCAN/2021-10-15]]|(% style="width:1510px" %)2 .jpg, 1 folder: Damage_after_failiure (containing 8 .jpg)
36 +|(% style="width:127px" %)[[2021-10-17>>https://mission.oewf.org/archive_downloads/amadee20/AEROSCAN/2021-10-17]]|(% style="width:1510px" %)1 folder: Wiring_and_fuselage_issues_on_AEROSCAN_backup_vehicle (containing 2 .jpg)
37 +|(% style="width:127px" %)[[2021-10-18>>https://mission.oewf.org/archive_downloads/amadee20/AEROSCAN/2021-10-18]]|(% style="width:1510px" %)Aeroscan report
38 +|(% style="width:127px" %)[[2021-10-20>>https://mission.oewf.org/archive_downloads/amadee20/AEROSCAN/2021-10-20]]|(% style="width:1510px" %)crash report, pictures of broken parts
39 +|(% style="width:127px" %)[[2021-10-27>>https://mission.oewf.org/archive_downloads/amadee20/AEROSCAN/2021-10-27]]|(% style="width:1510px" %)2 screenshots
40 +
41 +
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