Leaf area index (LAI) is an important parameter that determines the growth status of winter wheat and impacts the ecological and physical processes of plants in ecosystems. The problem of spectral saturation of winter wheat LAI at the booting stage was easily caused by the inversion of the univariate red-edge spectral vegetation index constructed by the red-edge band. In this paper, a new method that the univariate red-edge spectral vegetation index constructed in the red-edge band is used to invert the spectral saturation of the winter wheat LAI. The multivariable red-edge spectral vegetation index is used to invert the winter wheat LAI. This method can effectively delay the phenomenon of spectral saturation and improve the inversion preci...
Spectral index method was widely applied to the inversion of crop chlorophyll content. In the presen...
LAI is a crucial parameter and a basic quantity indicating crop growth situation. Empirical models c...
Leaf area index (LAI) is one of the key biophysical parameters in crop structure. The accurate quant...
Growing numbers of studies have focused on evaluating the ability of vegetation indices (VIs) to pre...
Leaf chlorophyll content (LCC) provides valuable information about the nutrition and photosynthesis ...
Leaf area index (LAI) and canopy chlorophyll density (CCD) are key indicators of crop growth status....
Continuous monitoring leaf area index (LAI) of field crops in a growing season has a great challenge...
Leaf area index (LAI) is a crucial biophysical variable for agroecosystems monitoring. Conventional ...
In the middle and late growing period of winter wheat, soil moisture is easily affected by saturatio...
Timely and nondestructive monitoring of leaf area index (LAI) using remote sensing techniques is cru...
Leaf Area Index (LAI) is a crucial biophysical variable for agroecosystems monitoring. Conventional ...
Spectral index method was widely applied to the inversion of crop chlorophyll content. In this study...
The present study used the PROSAIL forward model to simulate vegetation canopy spectrum, introducing...
The leaf area index (LAI) is one of the most important Earth surface parameters used in the modeling...
Spectral index method was widely applied to the inversion of crop chlorophyll content. In this study...
Spectral index method was widely applied to the inversion of crop chlorophyll content. In the presen...
LAI is a crucial parameter and a basic quantity indicating crop growth situation. Empirical models c...
Leaf area index (LAI) is one of the key biophysical parameters in crop structure. The accurate quant...
Growing numbers of studies have focused on evaluating the ability of vegetation indices (VIs) to pre...
Leaf chlorophyll content (LCC) provides valuable information about the nutrition and photosynthesis ...
Leaf area index (LAI) and canopy chlorophyll density (CCD) are key indicators of crop growth status....
Continuous monitoring leaf area index (LAI) of field crops in a growing season has a great challenge...
Leaf area index (LAI) is a crucial biophysical variable for agroecosystems monitoring. Conventional ...
In the middle and late growing period of winter wheat, soil moisture is easily affected by saturatio...
Timely and nondestructive monitoring of leaf area index (LAI) using remote sensing techniques is cru...
Leaf Area Index (LAI) is a crucial biophysical variable for agroecosystems monitoring. Conventional ...
Spectral index method was widely applied to the inversion of crop chlorophyll content. In this study...
The present study used the PROSAIL forward model to simulate vegetation canopy spectrum, introducing...
The leaf area index (LAI) is one of the most important Earth surface parameters used in the modeling...
Spectral index method was widely applied to the inversion of crop chlorophyll content. In this study...
Spectral index method was widely applied to the inversion of crop chlorophyll content. In the presen...
LAI is a crucial parameter and a basic quantity indicating crop growth situation. Empirical models c...
Leaf area index (LAI) is one of the key biophysical parameters in crop structure. The accurate quant...