Space-based hyperspectral instruments are used in many applications requiring identification of materials or helping to monitor the environment. Although there are lots of useful applications, the amount of space born data is limited. The DLR Earth Sensing Imaging Spectrometer (DESIS) is a new space-based hyperspectral instrument developed by DLR and operated under collaboration between the German Aerospace Center (DLR) and Teledyne Brown Engineering (TBE). The primary goal of DESIS is to measure and analyze quantitative diagnostic parameters describing key processes on the Earth sur-face. This goal can be reached with the instrument parameters of 235 spectral bands from 400 nm to 1000 nm and a GSD of 30 m. DESIS was installed on the Intern...
The German Aerospace Center (DLR) and Teledyne Brown Engineering (TBE) have established a collaborat...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a spaceborne instrument installed and operated...
Imaging spectrometry provides densely sampled and finely structured spectral information for each i...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a new space-based hyperspectral sensor develop...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a new space-based hyperspectral sensor develop...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a hyperspectral instrument which is successful...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a hyperspectral instrument which is successful...
The hyperspectral instrument DLR Earth Sensing Imaging Spectrometer (DESIS) will be developed and in...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a new space-based hyperspectral instrument dev...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a space-based instrument installed on the Inte...
On-ground calibration approach and selected results for DESIS have been presented. The DLR Earth Sen...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a space-based instrument installed and operate...
DESIS (DLR Earth Sensing Imaging Spectrometer) is a space-based hyperspectral sensor currently inst...
Whether for identification and characterization of materials or for monitoring of the environment, ...
The new hyperspectral instrument DLR Earth Sensing Imaging Spectrometer (DESIS) will be developed an...
The German Aerospace Center (DLR) and Teledyne Brown Engineering (TBE) have established a collaborat...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a spaceborne instrument installed and operated...
Imaging spectrometry provides densely sampled and finely structured spectral information for each i...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a new space-based hyperspectral sensor develop...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a new space-based hyperspectral sensor develop...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a hyperspectral instrument which is successful...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a hyperspectral instrument which is successful...
The hyperspectral instrument DLR Earth Sensing Imaging Spectrometer (DESIS) will be developed and in...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a new space-based hyperspectral instrument dev...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a space-based instrument installed on the Inte...
On-ground calibration approach and selected results for DESIS have been presented. The DLR Earth Sen...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a space-based instrument installed and operate...
DESIS (DLR Earth Sensing Imaging Spectrometer) is a space-based hyperspectral sensor currently inst...
Whether for identification and characterization of materials or for monitoring of the environment, ...
The new hyperspectral instrument DLR Earth Sensing Imaging Spectrometer (DESIS) will be developed an...
The German Aerospace Center (DLR) and Teledyne Brown Engineering (TBE) have established a collaborat...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a spaceborne instrument installed and operated...
Imaging spectrometry provides densely sampled and finely structured spectral information for each i...