The DLR Earth Sensing Imaging Spectrometer (DESIS) is a space-based instrument installed on the International Space Station (ISS) and operating since September, 2018. It is a collaboration mission between the German Aerospace Center (DLR) responsible for the development of the instrument and the data processing software and the US company Teledyne Brown Engineering (TBE) that has provided the Multi-User System for Earth Sensing (MUSES) platform. Since the start of the operation of DESIS, the data quality is constantly evaluated. In a continuous monitoring process, the data quality is controlled and, if necessary, the calibration algorithms and tables are adjusted. This is essential for the later data exploitation by scientists. Since the ...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a new space-based hyperspectral instrument dev...
Since end of August, 2018, the imaging spectrometer “DLR Earth Sensing Imaging Spectrometer” (DESIS)...
Imaging spectrometry provides densely sampled and finely structured spectral information for each i...
The new hyperspectral instrument DLR Earth Sensing Imaging Spectrometer (DESIS) will be developed an...
The hyperspectral instrument DLR Earth Sensing Imaging Spectrometer (DESIS) will be developed and in...
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 DLR Earth Sensing Imaging Spectrometer (DESIS) is a space-based instrument installed and operate...
Space-based hyperspectral instruments are used in many applications requiring identification of mate...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a spaceborne instrument installed and operated...
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...
DESIS (DLR Earth Sensing Imaging Spectrometer) is a space-based hyperspectral sensor currently inst...
Imaging spectrometry from aerial or spaceborne platforms, also known as hyperspectral remote sensing...
Whether for identification and characterization of materials or for monitoring of the environment, ...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a new space-based hyperspectral instrument dev...
Since end of August, 2018, the imaging spectrometer “DLR Earth Sensing Imaging Spectrometer” (DESIS)...
Imaging spectrometry provides densely sampled and finely structured spectral information for each i...
The new hyperspectral instrument DLR Earth Sensing Imaging Spectrometer (DESIS) will be developed an...
The hyperspectral instrument DLR Earth Sensing Imaging Spectrometer (DESIS) will be developed and in...
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 DLR Earth Sensing Imaging Spectrometer (DESIS) is a space-based instrument installed and operate...
Space-based hyperspectral instruments are used in many applications requiring identification of mate...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a spaceborne instrument installed and operated...
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...
DESIS (DLR Earth Sensing Imaging Spectrometer) is a space-based hyperspectral sensor currently inst...
Imaging spectrometry from aerial or spaceborne platforms, also known as hyperspectral remote sensing...
Whether for identification and characterization of materials or for monitoring of the environment, ...
The DLR Earth Sensing Imaging Spectrometer (DESIS) is a new space-based hyperspectral instrument dev...
Since end of August, 2018, the imaging spectrometer “DLR Earth Sensing Imaging Spectrometer” (DESIS)...
Imaging spectrometry provides densely sampled and finely structured spectral information for each i...