Leaf area index (LAI) plays an important role in models of climate, hydrology, and ecosystem productivity. The physical model-based inversion method is a practical approach for large-scale LAI inversion. However, the ill-posed inversion problem, due to the limited constraint of inaccurate input parameters, is the dominant source of inversion errors. For instance, variables related to leaf optical properties are always set as constants or have large ranges, instead of the actual leaf reflectance of pixel vegetation in the current model-based inversions. This paper proposes to estimate LAI with the actual leaf optical property of pixels, calculated from the leaf chlorophyll content (Chlleaf) product, using a three-dimensional stochastic radia...
Automated, image based methods for the retrieval of vegetation biophysical and biochemical variables...
This study compares maize leaf area index (LAI) retrieval methods based on radiative transfer models...
Reliable estimation of leaf chlorophyll-a and -b content (chl-a + b) at canopy scales is essential f...
Abstract: Lookup-table (LUT)-based radiative transfer model inversion is considered a physically-s...
This study proposes a new method for inverting radiative transfer models (RTM) to retrieve canopy bi...
Lookup-table (LUT)-based radiative transfer model inversion is considered a physically-sound and rob...
AbstractThe leaf area index (LAI) is an important vegetation parameter, which is used widely in many...
Leaf area index (LAI) and leaf chlorophyll content (Chll) represent key biophysical and biochemical ...
Leaf area index (LAI) is a key variable for modeling energy and mass exchange between the land surfa...
Canopy structure parameters (e.g., leaf area index (LAI)) are key variables of most climate and ecol...
Physically-based approaches for estimating Leaf Area Index (LAI) using remote sensing data rely on r...
Leaf area index (LAI) is one of the key parameters for the calculation of the energy budget, photosy...
The Leaf Area Index (LAI) is a key parameter controlling biophysical exchange processes in the veget...
We propose a strategy to construct a priori knowledge in Bidirectional Reflectance Distribution Func...
Optical remote sensing plays a fundament role in attempts to map repeatedly, in various spatial reso...
Automated, image based methods for the retrieval of vegetation biophysical and biochemical variables...
This study compares maize leaf area index (LAI) retrieval methods based on radiative transfer models...
Reliable estimation of leaf chlorophyll-a and -b content (chl-a + b) at canopy scales is essential f...
Abstract: Lookup-table (LUT)-based radiative transfer model inversion is considered a physically-s...
This study proposes a new method for inverting radiative transfer models (RTM) to retrieve canopy bi...
Lookup-table (LUT)-based radiative transfer model inversion is considered a physically-sound and rob...
AbstractThe leaf area index (LAI) is an important vegetation parameter, which is used widely in many...
Leaf area index (LAI) and leaf chlorophyll content (Chll) represent key biophysical and biochemical ...
Leaf area index (LAI) is a key variable for modeling energy and mass exchange between the land surfa...
Canopy structure parameters (e.g., leaf area index (LAI)) are key variables of most climate and ecol...
Physically-based approaches for estimating Leaf Area Index (LAI) using remote sensing data rely on r...
Leaf area index (LAI) is one of the key parameters for the calculation of the energy budget, photosy...
The Leaf Area Index (LAI) is a key parameter controlling biophysical exchange processes in the veget...
We propose a strategy to construct a priori knowledge in Bidirectional Reflectance Distribution Func...
Optical remote sensing plays a fundament role in attempts to map repeatedly, in various spatial reso...
Automated, image based methods for the retrieval of vegetation biophysical and biochemical variables...
This study compares maize leaf area index (LAI) retrieval methods based on radiative transfer models...
Reliable estimation of leaf chlorophyll-a and -b content (chl-a + b) at canopy scales is essential f...