DocumentCode :
3608308
Title :
Fine Land Cover Classification Using Daily Synthetic Landsat-Like Images at 15-m Resolution
Author :
Bin Chen ; Bo Huang ; Bing Xu
Author_Institution :
Global Change & Earth Syst. Sci., Beijing Normal Univ., Beijing, China
Volume :
12
Issue :
12
fYear :
2015
Firstpage :
2359
Lastpage :
2363
Abstract :
There is currently no unified remote sensing system available that can simultaneously produce images with fine spatial, temporal, and spectral resolutions. This letter proposes a unified spatiotemporal spectral blending model using Landsat Enhanced Thematic Mapper Plus and Moderate Resolution Imaging Spectroradiometer images to predict synthetic daily Landsat-like data with a 15-m resolution. The results of tests using both simulated and actual data over the Poyang Lake Nature Reserve show that the model can accurately capture the general trend of changes for the predicted period and can enhance the spatial resolution of the data, while at the same time preserving the original spectral information. The proposed model is also applied to improve land cover classification accuracy. The application in Wuhan, Hubei Province shows that the overall classification accuracy is markedly improved. With the integration of dense temporal characteristics, the user and producer accuracies for land cover types are also improved.
Keywords :
geophysical image processing; land cover; Hubei Province; Poyang Lake Nature Reserve; Wuhan; fine land cover classification; synthetic daily Landsat-like data images; unified spatiotemporal spectral blending model; wavelength 5 m; Accuracy; Earth; MODIS; Remote sensing; Satellites; Spatial resolution; Improved adaptive intensity–hue–saturation (IAIHS); Improved adaptive intensity???hue???saturation (IAIHS); land cover classification; spatial and temporal adaptive reflectance fusion model (STARFM); spatiotemporal–spectral fusion; spatiotemporal???spectral fusion;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing Letters, IEEE
Publisher :
ieee
ISSN :
1545-598X
Type :
jour
DOI :
10.1109/LGRS.2015.2453999
Filename :
7298396
Link To Document :
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