NASA NTRS · 20240014858
The Spectral Information Based Angular Correction Methodology for Satellite Intercalibration Applications
Abstract
Satellite inter-calibration often requires collocated observations with minimized discrepancies in sun-view angles, observation times, and sensor characteristics. The collocation criteria directly impact achievable inter-calibration accuracy. Addressing potential angular mismatches in inter-calibration samples is critical but not as fully recognized and addressed as spatial-temporal mismatches in many studies. To achieve high-accuracy corrections for errors due to mismatched sun-view geometry angles, an angular correction algorithm has been developed for the Climate Absolute Radiance and Refractivity Observatory Pathfinder (CPF) mission. This algorithm uses spectral correlation relationships to estimate differences in spectral radiances measured at different angles. This methodology can be extended for inter-calibrations between sensors measuring band radiances across a broad spectral region. We demonstrate its application in reducing angular mismatch errors between collocated measurements of multi-spectral imaging sensors, using the inter-calibration between the Moderate Resolution Imaging Spectrometer (MODIS) and the Visible Infrared Imaging Radiometer Suite (VIIRS) as an example. The angular correction allows for more relaxed collocation criteria so that more satellite-based inter-calibration samples can be utilized. Furthermore, implementing the angular correction algorithm improves inter-calibration accuracy in applications where angular mismatch errors have not been explicitly addressed previously.
Keep this discovery
Explore connections, maps & timelines
Wan Wu, Xu Liu, Qiguang Yang, Rajendra Bhatt, Yolanda Shea, Adam Thurston, Aron Bartle, Luke Morrill, Benjamin Scarino, David Doelling. The Spectral Information Based Angular Correction Methodology for Satellite Intercalibration Applications. https://ntrs.nasa.gov/citations/20240014858
Cite the original work for its findings. Save a collection to share your selection of sources.