MISR automatic geometric quality assessment and in-flight geometric calibration updates
An overview of the in-flight geometric calibrations and quality assessment along with the current status and discusion of the operational results is presented.
Engineering topics
Publications and source records attributed to Jovanovic, V..
An overview of the in-flight geometric calibrations and quality assessment along with the current status and discusion of the operational results is presented.
Instantaneously, the nine pushbroom cameras of the Multi-angle Image SpectroRadiometer (MISR) instrument view the Earth at nine discrete angles, ranging from forward 70 deg, 60 deg, 45 deg, 25 deg, nadir, to symmetric aftward angles in the along-track direction.
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This paper provides a description of the algorithm and operational aspects of AirMISR georectification along with examples and results from a recent flight.
This MISR in-flight Geometric Calibration (IGC) Plan describes the concept, development strategy and operational design to be used for geometric calibration of the instrument and for producing the Geometric Calibration Dataset (GCD) which is required as an input to the L1B2 standard processing.
This document describes the data products by the Airborne Multiangle Imaging SpectroRadiometer (AirMISR) sensor.
The theoretical concept, underlying the design of the Multi-angle Imaging SpectroRadiometer (MISR) inflight geometric calibration is the subject of this paper.
This Algorithm Theoretical Basis (ATB) document describes the algorithms used to generate the Multi-angle Imaging SpectroRadiometer (MISR) Level 1B2 Georectified Radiance Product (GRP).
The multi-angle Imaging SpectroRadiometer (MISR) is part of an Earth Observing System (EOS) payload to be launched in 1998.
Multi-Angle Imaging Spectro-Radiometer (MISR) is part of an Earth observing system (EOS) payload to be launched in 1998 to study the ecology and climate of Earth. EOS will acquire multi-angle images in reflected sunlight at nine angles.