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A NIST-Traceable Lab-to-Sky Spectral and Radiometric Calibration for NASA’s High-Altitude Airborne Hyperspectral Pushbroom Imager for Cloud and Aerosol Research and Development (PICARD)
The Pushbroom Imager for Cloud and Aerosol Research and Development (PICARD) visible through shortwave infrared imaging spectrometer was developed to carry a calibration laboratory environment to high altitudes, while also providing high- dy-namic- range bright cloud-top radiance measurements across a field of view just under 50 degrees. The in-flight performance of this new spectroradiometer was validated in comparison to multiple reference data sources and targets using imagery collected aboard NASA’s ER-2 high-altitude aircraft during the Western Diversity Time Series (WDTS) airborne science campaign in April 2023 and the September 2024 Plankton, Aerosol, Cloud, and ocean Ecosystem (PACE) Postlaunch Airborne eXperiment (PACE-PAX), both operating out of southern California. PICARD measurements from flights over Railroad Valley Playa, Nevada, USA, were compared to high-resolution radiance spectra of the dry lakebed provided by the Radiometric Calibration Network (RadCalNet) Working Group. Direct comparison to satellite cloud radiometry was en-abled by the ER-2 flying in coordination with simultaneous overpasses of the Terra, Aqua, and NOAA-20 Earth-observing satellites during WDTS and with the PACE ob-servatory during PACE-PAX. To account for large spectral differences between incan-descent laboratory sources and solar illumination, PICARD calibration relies on meas-urements using the Goddard Laser for Absolute Measurements of Radiance (GLAMR) to characterize and minimize spectral stray light from the instrument’s twin Offner grating spectrometers. Good agreement in comparison to reference measurements demonstrates PICARD’s ability to provide imagery for environmental science or for testing new sensor designs and retrieval algorithms for cloud and aerosol research with verified laboratory calibrations at high altitudes.
Document ID
20260003082
Acquisition Source
Ames Research Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Gary D Hoffmann ORCID
(Bay Area Environmental Research Institute Petaluma, California, United States)
Thomas Ellis
(Bay Area Environmental Research Institute Petaluma, California, United States)
Haiping Su
(Bay Area Environmental Research Institute Petaluma, United States)
Alok Shrestha
(Bay Area Environmental Research Institute Petaluma, United States)
Julia A Barsi
(Goddard Space Flight Center Greenbelt, United States)
Roseanne Dominguez ORCID
(Bay Area Environmental Research Institute Petaluma, United States)
Eric Fraim
(Bay Area Environmental Research Institute Petaluma, United States)
James Jacobson
(Bay Area Environmental Research Institute Petaluma, California, United States)
Steven Platnick
(Goddard Space Flight Center Greenbelt, United States)
G Thomas Arnold
(Science Systems and Applications (United States) Lanham, United States)
Kerry Meyer
(Goddard Space Flight Center Greenbelt, United States)
Jessica L McCarty
(Ames Research Center Mountain View, United States)
Date Acquired
April 14, 2026
Publication Date
April 14, 2026
Publication Information
Publication: Remote Sensing
Publisher: Multidisciplinary Digital Publishing Institute (Switzerland)
Volume: 18
Issue: 1168
e-ISSN: 2072-4292
URL: https://www.mdpi.com/2072-4292/18/8/1168
Subject Category
Earth Resources and Remote Sensing
Funding Number(s)
CONTRACT_GRANT: 80NSSC23M0230
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
External Peer Committee
Keywords
intersensor comparison
validation
calibration
PACE-PAX
GLAMR
PICARD
SWIR
VNIR
remote sensing
stray light
hyperspectral imagery
imaging spectroscopy
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