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Hyperspectral Remote Sensing of Vegetation and Agricultural Crops

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Figure

Table  1.  Characteristics  of  space-borne  hyperspectral  sensors  (either  in  orbit  or  planned  for  launch)  compared  with  ASD  spectroradiometer a,b Sensor Spatial  (meters) Spectral  (#) Swath (km) band range (µm) band  widths (µm) Irradiance (W
Figure 1. Hyperion hyperspectral image coverage of the World from 2001-2013. Hyperion, the first commercial hyperspectral sensor, onboard  Earth Observing-1 (EO-1) was launched on November 21, 2000 and has acquired a total of ~64,000 images by August, 2013
Table 2. Optimal (non-redundant) hyperspectral narrow bands to study vegetation and agricultural crops 1,2,3,4,5,6
Figure 4. Optimal hyperspectral narrowbands (HNBs; Figure 4a) and Landsat-8 broadbands (BBs; Figure 4b): showing the band centers and  widths
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