The RMoG (Random-Motion-over-Ground) model is commonly used to obtain tree height values from PolInSAR images. The RMoG model borrows its structure function from conventional RVoG (Random-Volume-over-Ground) model which is limited for modelling structural variety in canopy layer. This paper extends the RMoG model to improve tree height estimation accuracy by using a Fourier-Legendre polynomial as the structure function. The new model is denoted by the RMoG$_L$ model. The proposed modification makes height estimation less prone to errors by enabling more flexibility in representing the vertical structure of the vegetation layer. We applied the RMoG$_L$ model on airborne P- and L-band PolInSAR images from the Remingstorp test site in southern...
International audienceEstimating vegetation height from polarimetric interferometric synthetic apert...
PolInSAR is an active remote sensing technique that is widely used for forest canopy height estimati...
International audienceEstimating vegetation height from polarimetric interferometric synthetic apert...
This chapter is based on the published paper: Ghasemi, N., Tolpekin, V. and Stein, A., (2018). A mod...
In this paper we present our latest developments and experiments with the random-motion-over-ground ...
Height values of trees are an important indicator of the health and viabilityof forests. At present,...
In forestry studies, remote sensing has been widely used to monitor deforestation and estimate bioma...
We explored the possibility of modifying tree height estimation model and included temporal decorrel...
The project studied using of multi-baseline SAR data for estimating tree heights with compensation o...
This paper proposes a new method for forest height estimation using single-baseline single frequency...
This paper proposes a new method for forest height estimation using single-baseline single frequency...
Many applications require bare-earth Digital Terrain Models (DTMs) in the presence of forest canopy....
This paper proposes an improved model-based forest height inversion method for airborne L-band dual-...
This paper investigates the potentials and limitations of a simple dual-baseline PolInSAR (DBPI) met...
International audienceEstimating vegetation height from polarimetric interferometric synthetic apert...
International audienceEstimating vegetation height from polarimetric interferometric synthetic apert...
PolInSAR is an active remote sensing technique that is widely used for forest canopy height estimati...
International audienceEstimating vegetation height from polarimetric interferometric synthetic apert...
This chapter is based on the published paper: Ghasemi, N., Tolpekin, V. and Stein, A., (2018). A mod...
In this paper we present our latest developments and experiments with the random-motion-over-ground ...
Height values of trees are an important indicator of the health and viabilityof forests. At present,...
In forestry studies, remote sensing has been widely used to monitor deforestation and estimate bioma...
We explored the possibility of modifying tree height estimation model and included temporal decorrel...
The project studied using of multi-baseline SAR data for estimating tree heights with compensation o...
This paper proposes a new method for forest height estimation using single-baseline single frequency...
This paper proposes a new method for forest height estimation using single-baseline single frequency...
Many applications require bare-earth Digital Terrain Models (DTMs) in the presence of forest canopy....
This paper proposes an improved model-based forest height inversion method for airborne L-band dual-...
This paper investigates the potentials and limitations of a simple dual-baseline PolInSAR (DBPI) met...
International audienceEstimating vegetation height from polarimetric interferometric synthetic apert...
International audienceEstimating vegetation height from polarimetric interferometric synthetic apert...
PolInSAR is an active remote sensing technique that is widely used for forest canopy height estimati...
International audienceEstimating vegetation height from polarimetric interferometric synthetic apert...