The NDVI dataset with high temporal and spatial resolution (HTSN) is significant for extracting information about the phenological change of vegetation in regions with a complex earth surface. The Spatial and Temporal Adaptive Reflectance Fusion Model (STARFM) has been successfully applied to synthesize the HTSN by fusing the data with different characteristics. Based on the model, there are two different schemes for synthesizing the HTSN. One scheme is that red reflectance and near-infrared (NIR) reflectance are synthesized, respectively, and the HTSN is then obtained through algebraic operation (Scheme 1); the other scheme is that the red and NIR reflectance are used to calculate NDVI, which is directly taken as input data to synthesize t...
Spatiotemporal fusion of remote sensing data is essential for generating high spatial and temporal r...
Most methods used for crop classification rely on the ground-reference data of the same year, which ...
Remote sensing technology plays an important role in monitoring rapid changes of the Earth's surface...
The NDVI dataset with high temporal and spatial resolution (HTSN) is significant for extracting info...
Due to technical limitations, it is impossible to have high resolution in both spatial and temporal ...
Satellite data for studying surface dynamics in heterogeneous landscapes are missing due to frequent...
The increasingly intensive and extensive coal mining activities on the Loess Plateau pose a threat t...
With the recent launch of new satellites and the developments of spatiotemporal data fusion methods,...
It is still difficult to obtain high-resolution and fast-updated NDVI data, and spatiotemporal fusio...
It is only by using the first collection of intelligence satellite imagery acquired by CORONA, that ...
The focus of the current study is to compare data fusion methods applied to sensors with medium- and...
Accurate monitoring of grassland biomass at high spatial and temporal resolutions is important for t...
Accurate regional and global information on land cover and its changes over time is crucial for envi...
Time series vegetation indices with high spatial resolution and high temporal frequency are importan...
Estimating the net primary production (NPP) of vegetation is essential for eco-environment conservat...
Spatiotemporal fusion of remote sensing data is essential for generating high spatial and temporal r...
Most methods used for crop classification rely on the ground-reference data of the same year, which ...
Remote sensing technology plays an important role in monitoring rapid changes of the Earth's surface...
The NDVI dataset with high temporal and spatial resolution (HTSN) is significant for extracting info...
Due to technical limitations, it is impossible to have high resolution in both spatial and temporal ...
Satellite data for studying surface dynamics in heterogeneous landscapes are missing due to frequent...
The increasingly intensive and extensive coal mining activities on the Loess Plateau pose a threat t...
With the recent launch of new satellites and the developments of spatiotemporal data fusion methods,...
It is still difficult to obtain high-resolution and fast-updated NDVI data, and spatiotemporal fusio...
It is only by using the first collection of intelligence satellite imagery acquired by CORONA, that ...
The focus of the current study is to compare data fusion methods applied to sensors with medium- and...
Accurate monitoring of grassland biomass at high spatial and temporal resolutions is important for t...
Accurate regional and global information on land cover and its changes over time is crucial for envi...
Time series vegetation indices with high spatial resolution and high temporal frequency are importan...
Estimating the net primary production (NPP) of vegetation is essential for eco-environment conservat...
Spatiotemporal fusion of remote sensing data is essential for generating high spatial and temporal r...
Most methods used for crop classification rely on the ground-reference data of the same year, which ...
Remote sensing technology plays an important role in monitoring rapid changes of the Earth's surface...