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A physics-based algorithm for retrieving land-surface emissivity and temperature from EOS/MODIS data

IEEE Transactions on Geoscience and Remote Sensing · 1997 · Vol. 35(4) · pp. 980–996
Zhengming WanZhao-Liang Li

Abstract

The authors have developed a physics-based land-surface temperature (LST) algorithm for simultaneously retrieving surface band-averaged emissivities and temperatures from day/night pairs of MODIS (Moderate Resolution Imaging Spectroradiometer) data in seven thermal infrared bands. The set of 14 nonlinear equations in the algorithm is solved with the statistical recession method and the least-squares fit method. This new LST algorithm was tested with simulated MODIS data for 80 sets of hand-averaged emissivities calculated from published spectral data of terrestrial materials in wide ranges of atmospheric and surface temperature conditions. Comprehensive sensitivity and error analysis has been made to evaluate the performance of the new LST algorithm and its dependence on variations in surface emissivity and temperature, upon atmospheric conditions, as well as the noise-equivalent temperature difference (NE/spl Delta/T) and calibration accuracy specifications of the MODIS Instrument. In cases with a systematic calibration error of 0.5%, the standard deviations of errors in retrieved surface daytime and nighttime temperatures fall between 0.4-0.5 K over a wide range of surface temperatures for mid-latitude summer conditions. The standard deviations of errors in retrieved emissivities in bands 31 and 32 (in the 10-12.5 /spl mu/m IR spectral window region) are 0.009, and the maximum error in retrieved LST values falls between 2-3 K.

Urban Heat Island MitigationCalibration and Measurement TechniquesBuilding Energy and Comfort OptimizationEmissivityModerate-resolution imaging spectroradiometerRemote sensingCalibrationStandard deviationEnvironmental scienceDaytimeSpectroradiometerAtmospheric correctionAlgorithm

Funding

  • National Oceanic and Atmospheric Administration
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References
Towards a local split window method over land surfaces
International Journal of Remote Sensing · 1990 · 801 citations
MODIS: advanced facility instrument for studies of the Earth as a system
IEEE Transactions on Geoscience and Remote Sensing · 1989 · 1,088 citations
A generalized split-window algorithm for retrieving land-surface temperature from space
IEEE Transactions on Geoscience and Remote Sensing · 1996 · 1,778 citations
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A physics-based algorithm for retrieving land-surface emissivity and temperature from EOS/MODIS data · Scinovex