Mapping vegetation cover is critical for understanding and monitoring ecosystem functions in semi-arid biomes. As existing estimates tend to underestimate the woody cover in areas with dry deciduous shrubland and woodland, we present an approach to improve the regional estimation of woody and herbaceous fractional cover in the East Asia steppe. This developed approach uses Random Forest models by combining multiple remote sensing data—training samples derived from high-resolution image in a tailored spatial sampling and model inputs composed of specific metrics from MODIS sensor and ancillary variables including topographic, bioclimatic, and land surface information. We emphasize that effective spatial sampling, high-quality classification,...
Over the last decade, remote-sensing products found their use in numerous public applications and sc...
Despite rapid advances and large-scale initiatives in forest mapping, reliable cross-border informat...
Terrestrial laser scanning (TLS) has been shown to enable an efficient, precise, and non-destructive...
Mapping vegetation cover is critical for understanding and monitoring ecosystem functions in semi-ar...
Mapping vegetation cover is critical for understanding and monitoring ecosystem functions in semi-ar...
Linear spectral mixture analysis (SMA) is commonly used to infer fractional vegetation cover (FVC), ...
The Horqin temperate steppe is the largest grassland in northern China. With the combined disturbanc...
In many arid mountains, dwarf shrubs represent the most important fodder and firewood resources; the...
In many arid mountains, dwarf shrubs represent the most important fodder and firewood resources; the...
Woody canopy cover is an essential variable to characterize and monitor vegetation health, carbon ac...
Data from the moderate-resolution imaging spectroradiometer (MODIS) sensor, in combination with new ...
The change of fraction vegetation cover (FVC) is the key ecological index for vegetation dynamics of...
Temperate and semiarid grasslands comprise 80% of the land area on the Mongolian Plateau and environ...
From in situ measured woody cover we develop a phenology driven model to estimate the canopy cover o...
Reliable assessments of tree/grass fractional cover in savanna using remote sensing are challenging ...
Over the last decade, remote-sensing products found their use in numerous public applications and sc...
Despite rapid advances and large-scale initiatives in forest mapping, reliable cross-border informat...
Terrestrial laser scanning (TLS) has been shown to enable an efficient, precise, and non-destructive...
Mapping vegetation cover is critical for understanding and monitoring ecosystem functions in semi-ar...
Mapping vegetation cover is critical for understanding and monitoring ecosystem functions in semi-ar...
Linear spectral mixture analysis (SMA) is commonly used to infer fractional vegetation cover (FVC), ...
The Horqin temperate steppe is the largest grassland in northern China. With the combined disturbanc...
In many arid mountains, dwarf shrubs represent the most important fodder and firewood resources; the...
In many arid mountains, dwarf shrubs represent the most important fodder and firewood resources; the...
Woody canopy cover is an essential variable to characterize and monitor vegetation health, carbon ac...
Data from the moderate-resolution imaging spectroradiometer (MODIS) sensor, in combination with new ...
The change of fraction vegetation cover (FVC) is the key ecological index for vegetation dynamics of...
Temperate and semiarid grasslands comprise 80% of the land area on the Mongolian Plateau and environ...
From in situ measured woody cover we develop a phenology driven model to estimate the canopy cover o...
Reliable assessments of tree/grass fractional cover in savanna using remote sensing are challenging ...
Over the last decade, remote-sensing products found their use in numerous public applications and sc...
Despite rapid advances and large-scale initiatives in forest mapping, reliable cross-border informat...
Terrestrial laser scanning (TLS) has been shown to enable an efficient, precise, and non-destructive...