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Imaging spectrometer measurement of water vapor in the 400 to 2500 nm spectral regionThe Airborne Visible-Infrared Imaging Spectrometer (AVIRIS) measures the total upwelling spectral radiance from 400 to 2500 nm sampled at 10 nm intervals. The instrument acquires spectral data at an altitude of 20 km above sea level, as images of 11 by up to 100 km at 17x17 meter spatial sampling. We have developed a nonlinear spectral fitting algorithm coupled with a radiative transfer code to derive the total path water vapor from the spectrum, measured for each spatial element in an AVIRIS image. The algorithm compensates for variation in the surface spectral reflectance and atmospheric aerosols. It uses water vapor absorption bands centered at 940 nm, 1040 nm, and 1380 nm. We analyze data sets with water vapor abundances ranging from 1 to 40 perceptible millimeters. In one data set, the total path water vapor varies from 7 to 21 mm over a distance of less than 10 km. We have analyzed a time series of five images acquired at 12 minute intervals; these show spatially heterogeneous changes of advocated water vapor of 25 percent over 1 hour. The algorithm determines water vapor for images with a range of ground covers, including bare rock and soil, sparse to dense vegetation, snow and ice, open water, and clouds. The precision of the water vapor determination approaches one percent. However, the precision is sensitive to the absolute abundance and the absorption strength of the atmospheric water vapor band analyzed. We have evaluated the accuracy of the algorithm by comparing several surface-based determinations of water vapor at the time of the AVIRIS data acquisition. The agreement between the AVIRIS measured water vapor and the in situ surface radiometer and surface interferometer measured water vapor is 5 to 10 percent.
Document ID
19960020332
Acquisition Source
Jet Propulsion Laboratory
Document Type
Conference Paper
Authors
Green, Robert O.
(Jet Propulsion Lab., California Inst. of Tech. Pasadena, CA United States)
Roberts, Dar A.
(California Univ. Santa Barbara, CA United States)
Conel, James E.
(Jet Propulsion Lab., California Inst. of Tech. Pasadena, CA United States)
Dozier, Jeff
(California Univ. Santa Barbara, CA United States)
Date Acquired
August 17, 2013
Publication Date
January 1, 1995
Publication Information
Publication: Optical Remote Sensing of the Atmosphere, Volume 2
Subject Category
Meteorology And Climatology
Accession Number
96N23927
Distribution Limits
Public
Copyright
Other

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