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Please use this identifier to cite or link to this item: http://hdl.handle.net/11375/31137
Title: The irradiance instrument subsystem (IRIS) on the airborne-lunar spectral irradiance (air-LUSI) instrument
Authors: Grantham SE
Turpie KR
Stone TC
Gadsden SA
Larason TC
Zarobila CJ
Maxwell SE
Woodward JT
Brown SW
Department: Mechanical Engineering
Keywords: 40 Engineering;5109 Space Sciences;4001 Aerospace Engineering;51 Physical Sciences
Publication Date: 1-Jun-2022
Publisher: IOP Publishing
Abstract: The objective of the airborne lunar spectral irradiance (air-LUSI) project is to make low uncertainty, SI-traceable measurements of the LUSI in the visible to near-infrared region from an aircraft above most of the optically absorbing components of the atmosphere. The measurements are made from a NASA ER-2 aircraft, which can fly at altitudes of approximately 20 km above sea level. Air-LUSI measurements, corrected for residual atmospheric attenuation, are designed to provide a matrix of low uncertainty top-of-the-atmosphere lunar irradiances at known lunar phase and libration angles to be compared and combined with other lunar irradiance data sets to constrain the uncertainties in models of lunar irradiance and reflectance. The measurements are also expected to provide insight into the differences between models and satellite sensor measurements of lunar irradiance. This paper describes the development and characterization of the air-LUSI subsystem for acquiring lunar measurements, called the irradiance instrument subsystem, prior to flight.
URI: http://hdl.handle.net/11375/31137
metadata.dc.identifier.doi: https://doi.org/10.1088/1361-6501/ac5875
ISSN: 0957-0233
1361-6501
Appears in Collections:Mechanical Engineering Publications

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