High Resolution Stereo Camera

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High Resolution Stereo Camera (HRSC) is a camera experiment on Mars Express.[1] A version for Earth called HRSC-AX was also developed, as was a version for Mars 96.[1] It has four main parts: camera head, super resolution channel, instrument frame, and digital unit.[1] At an altitude of 250 km from Mars, SRC can produce images with a resolution of 2.3 meters/pixel of 2.35 km square Mars terrain.[1] It has 9 channels and can produce digital terrain models.[1] A typical image from HRSC of Mars has a resolution ranging from 12.5 for nadir (directly down) to 25 m/pixel for the furthest off-nadir shots, which can be up to 18.9 degrees.[2]

By 2012, about 61.5% of the surface of Mars was mapped at a resolution of at least 20 meters per pixel by the Mars Express mission using this camera.[3] Another area of study is repeat imaging, to allow the study of dynamic processes on Mars.[2][4] Another trick is to make short videos of the Mars surface by taking advantage of the pushbroom nature of the detector. Each section is slightly offset for a different color, but when combined, every view is used to make a short animation.[5]

By the start of 2015, about 70% of Mars had been imaged at resolutions greater than 20 m per pixel, and 97% at resolutions of least 60 m per pixel.[6]

Example observation

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Orcus Patera, imaged by the HRSC:

Mars Express HRSC view of Orcus Patera (Courtesy of the ESA/DLR/FU Berlin (G. Neukum))
Mars Express HRSC view of Orcus Patera with colors for elevation (Courtesy of the ESA/DLR/FU Berlin (G. Neukum))

See also

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References

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  1. ^ a b c d e DLR – HRSC on Mars Express Archived 2012-01-17 at the Wayback Machine
  2. ^ a b Lua error in Module:Citation/CS1/Configuration at line 2172: attempt to index field '?' (a nil value).
  3. ^ ESA -Mapping Mars
  4. ^ Lua error in Module:Citation/CS1/Configuration at line 2172: attempt to index field '?' (a nil value).
  5. ^ TPS – Capturing Martian Weather in Motion – November 4, 2016
  6. ^ THE HIGH RESOLUTION STEREO CAMERA (HRSC): STATUS AND FACTS (2015)
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