The present study used the PROSAIL forward model to simulate vegetation canopy spectrum, introducing blue and green bands to amend the effects of atmosphere and soil background, and constructing HuanJing vegetation Index (HJVI) to avoid premature saturation. Based on ground observation data of different typical winter wheat, we established HJVI-LAI long time series inversion models and implemented different varieties cross-validation to the models. The results show that the LAI inversion model of HJVI has higher precision than similar vegetation index model, has good universality, and can be applied to remote sensing multi-temporal winter wheat growth monitoring and LAI inversion
The leaf area index (LAI) is critical for the respiration, transpiration, and photosynthesis of crop...
LAI is a crucial parameter and a basic quantity indicating crop growth situation. Empirical models c...
This study proposes a new method for inverting radiative transfer models (RTM) to retrieve canopy bi...
Leaf area index (LAI) is an important parameter that determines the growth status of winter wheat an...
Leaf area index (LAI) is one of the key biophysical parameters in crop structure. The accurate quant...
Remote sensing images are widely used to map leaf area index (LAI) continuously over landscape. The ...
Continuous monitoring leaf area index (LAI) of field crops in a growing season has a great challenge...
When we estimate the land surface variables by remote sensing model inversion, a priori knowledge is...
Chinese Academy of Sciences KSCX2-EW-B-1;National Natural Science Foundation of China 90502005Harv...
The leaf area index (LAI) is an important ecological parameter that characterizes the interface betw...
In the middle and late growing period of winter wheat, soil moisture is easily affected by saturatio...
Leaf area index (LAI) and biomass are frequently used target variables for agricultural and ecologic...
Growing numbers of studies have focused on evaluating the ability of vegetation indices (VIs) to pre...
Leaf area index (LAI) is a key input in models describing biosphere processes and has widely been us...
Leaf area index (LAI) is an important vegetation parameter that characterizes leaf density and canop...
The leaf area index (LAI) is critical for the respiration, transpiration, and photosynthesis of crop...
LAI is a crucial parameter and a basic quantity indicating crop growth situation. Empirical models c...
This study proposes a new method for inverting radiative transfer models (RTM) to retrieve canopy bi...
Leaf area index (LAI) is an important parameter that determines the growth status of winter wheat an...
Leaf area index (LAI) is one of the key biophysical parameters in crop structure. The accurate quant...
Remote sensing images are widely used to map leaf area index (LAI) continuously over landscape. The ...
Continuous monitoring leaf area index (LAI) of field crops in a growing season has a great challenge...
When we estimate the land surface variables by remote sensing model inversion, a priori knowledge is...
Chinese Academy of Sciences KSCX2-EW-B-1;National Natural Science Foundation of China 90502005Harv...
The leaf area index (LAI) is an important ecological parameter that characterizes the interface betw...
In the middle and late growing period of winter wheat, soil moisture is easily affected by saturatio...
Leaf area index (LAI) and biomass are frequently used target variables for agricultural and ecologic...
Growing numbers of studies have focused on evaluating the ability of vegetation indices (VIs) to pre...
Leaf area index (LAI) is a key input in models describing biosphere processes and has widely been us...
Leaf area index (LAI) is an important vegetation parameter that characterizes leaf density and canop...
The leaf area index (LAI) is critical for the respiration, transpiration, and photosynthesis of crop...
LAI is a crucial parameter and a basic quantity indicating crop growth situation. Empirical models c...
This study proposes a new method for inverting radiative transfer models (RTM) to retrieve canopy bi...