Skip to main content

page search

Library Land cover and crop type classification along the season based on biophysical variables retrieved from multi-sensor high-resolution time series

Land cover and crop type classification along the season based on biophysical variables retrieved from multi-sensor high-resolution time series

Land cover and crop type classification along the season based on biophysical variables retrieved from multi-sensor high-resolution time series

Resource information

Date of publication
December 2015
Resource Language
ISBN / Resource ID
AGRIS:LV2016029340

With the ever-increasing number of satellites and the availability of data free of charge, the integration of multi-sensor images in coherent time series offers new opportunities for land cover and crop type classification. This article investigates the potential of structural biophysical variables as common parameters to consistently combine multi-sensor time series and to exploit them for land/crop cover classification. Artificial neural networks were trained based on a radiative transfer model in order to retrieve high resolution LAI, FAPAR and FCOVER from Landsat-8 and SPOT-4. The correlation coefficients between field measurements and the retrieved biophysical variables were 0.83, 0.85 and 0.79 for LAI, FAPAR and FCOVER, respectively. The retrieved biophysical variables’ time series displayed consistent average temporal trajectories, even though the class variability and signal-to-noise ratio increased compared to NDVI. Six random forest classifiers were trained and applied along the season with different inputs: spectral bands, NDVI, as well as FAPAR, LAI and FCOVER, separately and jointly. Classifications with structural biophysical variables reached end-of-season overall accuracies ranging from 73%–76% when used alone and 77% when used jointly. This corresponds to 90% and 95% of the accuracy level achieved with the spectral bands and NDVI. FCOVER appears to be the most promising biophysical variable for classification. When assuming that the cropland extent is known, crop type classification reaches 89% with spectral information, 87% with the NDVI and 81%–84% with biophysical variables

Share on RLBI navigator
NO

Authors and Publishers

Author(s), editor(s), contributor(s)

Waldner, François
Lambert, Marie Julie
Li, Wenjuan
Weiss, Marie
Demarez, Valérie
Morin, David
Marais-Sicre, Claire
Hagolle, Olivier
Baret, Frédéric
Defourny, Pierre

Data Provider