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Spatio-temporal prediction of daily temperatures using time-series of MODIS LST images (CROSBI ID 593615)

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Hengl, Tomislav ; Heuvelink, Gerard B.M. ; Perčec Tadić, Melita ; Pebesma, Edzer Spatio-temporal prediction of daily temperatures using time-series of MODIS LST images // Proceedings of geoENV2012 / Gomez-Hernandez, J.J. (ur.). Valencia: Universitat Politecnica de Valencia, 2012

Podaci o odgovornosti

Hengl, Tomislav ; Heuvelink, Gerard B.M. ; Perčec Tadić, Melita ; Pebesma, Edzer

engleski

Spatio-temporal prediction of daily temperatures using time-series of MODIS LST images

A computational framework to generate daily temperature maps using time-series of publicly available MODIS MOD11A2 product Land Surface Temperature (LST) images (1 km resolution ; 8-day composites) is illustrated using temperature measurements from the national network of meteorological stations (159) in Croatia. The input data set contains 57, 282 ground measurements of daily temperature for the year 2008. Temperature was modeled as a function of latitude, longitude, distance from the sea, elevation, time, insolation, and the MODIS LST images. The original rasters were first converted to principal components to reduce noise and filter missing pixels in the LST images. The residual were next analyzed for spatio-temporal auto-correlation ; sum-metric separable variograms were fitted to account for zonal and geometric space-time anisotropy. The final predictions were generated for time-slices of a 3D space-time cube, constructed in the R environment for statistical computing. The results show that the space-time regression model can explain a significant part of the variation in station-data (84%). MODIS LST 8-day (cloud-free) images are unbiased estimator of the daily temperature, but with relatively low precision (±4.1°C) ; however their added value is that they systematically improve detection of local changes in land surface temperature due to local meteorological conditions and/or active heat sources (urban areas, land cover classes). The results of 10–fold cross-validation show that use of spatio-temporal regression-kriging and incorporation of time-series of remote sensing images leads to significantly more accurate maps of temperature than if plain spatial techniques were used. The average (global) accuracy of mapping temperature was ±2.4°C. The regression-kriging explained 91% of variability in daily temperatures, compared to 44% for ordinary kriging. Further software advancement—interactive space-time variogram exploration and automated retrieval, resampling and filtering of MODIS images—are anticipated.

Land surface temperature; Regression-kriging; Space-time variogram; MODIS; Noise filtering; Principal component analysis

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Podaci o prilogu

2012.

objavljeno

Podaci o matičnoj publikaciji

Proceedings of geoENV2012

Gomez-Hernandez, J.J.

Valencia: Universitat Politecnica de Valencia

978-84-8363-923-8

Podaci o skupu

IX Conference on Geostatistics for Environmental Applications: geoENV 2012

predavanje

19.09.2012-21.09.2012

Valencia, Španjolska

Povezanost rada

Geologija, Matematika

Poveznice