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GISdevelopment > Proceedings > ACRS > 1999


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Agriculture/Soil

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Measurement and Modeling

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Forest Resources

Mapping from Space

Oceanography/Coastal Zone

Topics Including Education

Hyper Spectral Image Processing

Image Processing

Geology

Environment

GIS

Global Change

Airborne Remote Sensing

Poster Sessions
  • Session 1
  • Session 2
  • Session 3
  • Session 4
  • Session 5
  • Session 6



  • ACRS 1999


    Poster Session 1
    10-Bands Ocean Color and Temperature Scanner

    Optics System
    There is a 45o scanning mirror (90.4 rpm) and a reflectance telescope. After the telescope there is a "K" mirror, whose rotation velocity (45.2 rpm) is half of the scanning mirror (90.4rpm) and the rotation direction is the same as the scanning mirror, to eliminate the image rotation on the focal plane. The input. The input radiance was divided into three parts, thermal infrared is reflected by the first dichroic (D1) and is focal on a 2x4 elements HgCdTe detector which covered by its filter, forming band9 and band10. The HgCdTe detector and filter are colled down by sterling cooler. The radiance pass through D1 is further divided into two parts, one is reflected by the second dichroic (D2) forming the band1~5 while the other pass through D2 forming the band6~band8. The optics aperture is 200mm and focal length for band1~band8 is nearly 650mm and 202mm for band9~band10. There is a black body over the scanning mirror used for flying calibration correction of thermal channel, its temperature is measured by Pt resistance.

    Polarization Sensitivity Elimination
    Polarization sensitivity elimination is very important for ocean color observation. Because the radiation reflected by sea surface and scattered by atmosphere has strong polarization, especially at strong wavelength. Therefore to eliminate the polarization sensitivity of the instrument used for ocean color observation is very important, otherwise it will reduce measurement accuracy of the instrument. Therefore the 10-bands ocean color uses some methods to eliminate its polarization sensitivity. First, all reflectance surfaces of mirror use Ag film, because Ag film has high reflectance and low polarization from visible to infrared band. Second, we control the polarization of two dichroics. Third, we arrange the position of two dichoroics. Third, we arrange the position of scanning mirror, "K" mirror and dichroics reasonably to avoid the polarization add in the same direction. Fourth, we use a polarization scrambler to further eliminate the polarization. As a results, the polarization sensitivity of the scanner is less than 5%.

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