Characterization of the Libyan desert in support of vicarious calibration

Thorough calibration of electro-optical sensors being designed for today's space-based applications is essential to utilize remotely sensed imagery products. A complete sensor calibration provides in-depth understanding of operation and performance, while verifying that the system meets mission...

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Online Access:http://hdl.handle.net/2047/d20002831
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spelling ndltd-NEU--neu-13302021-05-25T05:09:42ZCharacterization of the Libyan desert in support of vicarious calibrationThorough calibration of electro-optical sensors being designed for today's space-based applications is essential to utilize remotely sensed imagery products. A complete sensor calibration provides in-depth understanding of operation and performance, while verifying that the system meets mission standards. Accurate calibration is crucial in order to give the data physical meaning and allow the imagery to be used and compared for a variety of applications. The use of invariant sites for vicarious calibration has become a valuable tool for the changing design and demands of new instruments. Pseudo-invariant calibration sites provide the opportunity to utilize a much larger site to accommodate the full sensor footprint. Characterizing and understanding these sites is key to successful vicarious calibration.http://hdl.handle.net/2047/d20002831
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sources NDLTD
description Thorough calibration of electro-optical sensors being designed for today's space-based applications is essential to utilize remotely sensed imagery products. A complete sensor calibration provides in-depth understanding of operation and performance, while verifying that the system meets mission standards. Accurate calibration is crucial in order to give the data physical meaning and allow the imagery to be used and compared for a variety of applications. The use of invariant sites for vicarious calibration has become a valuable tool for the changing design and demands of new instruments. Pseudo-invariant calibration sites provide the opportunity to utilize a much larger site to accommodate the full sensor footprint. Characterizing and understanding these sites is key to successful vicarious calibration.
title Characterization of the Libyan desert in support of vicarious calibration
spellingShingle Characterization of the Libyan desert in support of vicarious calibration
title_short Characterization of the Libyan desert in support of vicarious calibration
title_full Characterization of the Libyan desert in support of vicarious calibration
title_fullStr Characterization of the Libyan desert in support of vicarious calibration
title_full_unstemmed Characterization of the Libyan desert in support of vicarious calibration
title_sort characterization of the libyan desert in support of vicarious calibration
publishDate
url http://hdl.handle.net/2047/d20002831
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