This paper aims to retrieve temporal high-resolution LAI derived by fusing MOD15 products (1 km resolution), field-measured LAI and ASTER reflectance (15-m resolution). Though the inversion of a physically based canopy reflectance model using high-resolution satellite data can produce high-resolution LAI products, the obstacle to producing temporal products is obvious due to the low temporal resolution of high resolution satellite data. A feasible method is to combine different source data, taking advantage of the spatial and temporal resolution of different sensors. In this paper, a high-resolution LAI retrieval method was implemented using a dynamic Bayesian network (DBN) inversion framework. MODIS LAI data with higher temporal resolutio...
The primary restriction on high resolution remote sensing data is the limit observation frequency. U...
In this paper, we present an approach for generating a consistent long-term global leaf area index (...
Near-real-time, high-spatial-resolution leaf area index (LAI) maps would enable producers to monitor...
This paper aims to retrieve temporal high-resolution LAI derived by fusing MOD15 products (1 km reso...
The leaf area index (LAI) is one of the most critical structural parameters of the vegetation canopy...
Many applications, including crop growth and yield monitoring, require accurate long-term time serie...
Leaf area index (LAI) is one of the key parameters in crop growth monitoring and global change studi...
Leaf area index (LAI) is an important biophysical parameter and the retrieval of LAI from remote sen...
Leaf area index (LAI) is an important biophysical parameter and the retrieval of LAI from remote sen...
Canopy structure parameters (e.g., leaf area index (LAI)) are key variables of most climate and ecol...
Leaf area index (LAI) is a critical vegetation structural parameter in biogeochemical and biophysica...
Leaf area index (LAI) is one of the key structural variables in terrestrial vegetation ecosystems. R...
The Multi-Angle Imaging Spectroradiometer (MISR) is a powerful sensor for leaf area index (LAI) mapp...
The accuracy of leaf area index (LAI) retrieval depends critically on the quality of the input refle...
The primary restriction on high resolution remote sensing data is the limit observation frequency. U...
The primary restriction on high resolution remote sensing data is the limit observation frequency. U...
In this paper, we present an approach for generating a consistent long-term global leaf area index (...
Near-real-time, high-spatial-resolution leaf area index (LAI) maps would enable producers to monitor...
This paper aims to retrieve temporal high-resolution LAI derived by fusing MOD15 products (1 km reso...
The leaf area index (LAI) is one of the most critical structural parameters of the vegetation canopy...
Many applications, including crop growth and yield monitoring, require accurate long-term time serie...
Leaf area index (LAI) is one of the key parameters in crop growth monitoring and global change studi...
Leaf area index (LAI) is an important biophysical parameter and the retrieval of LAI from remote sen...
Leaf area index (LAI) is an important biophysical parameter and the retrieval of LAI from remote sen...
Canopy structure parameters (e.g., leaf area index (LAI)) are key variables of most climate and ecol...
Leaf area index (LAI) is a critical vegetation structural parameter in biogeochemical and biophysica...
Leaf area index (LAI) is one of the key structural variables in terrestrial vegetation ecosystems. R...
The Multi-Angle Imaging Spectroradiometer (MISR) is a powerful sensor for leaf area index (LAI) mapp...
The accuracy of leaf area index (LAI) retrieval depends critically on the quality of the input refle...
The primary restriction on high resolution remote sensing data is the limit observation frequency. U...
The primary restriction on high resolution remote sensing data is the limit observation frequency. U...
In this paper, we present an approach for generating a consistent long-term global leaf area index (...
Near-real-time, high-spatial-resolution leaf area index (LAI) maps would enable producers to monitor...