Physical environmental processes, such as the evolution of precipitation or the diffusion of chemical clouds in the atmosphere, can be approximated by numerical models based on the underlying physics, e.g., for the purpose of prediction. As the modeling process is often very complex and resource demanding, such models are sometimes replaced by those that use historic and current data for calibration. For atmospheric (e.g., precipitation) or oceanographic (e.g., sea surface temperature) fields, the data-driven methods often concern the horizontal displacement driven by transport processes (called advection). These methods rely on flow fields estimated from images of the phenomenon by computer vision techniques, such as optical flow (OF). In ...
In this paper we report the results of feasibility studies concerning the use of radars on polar orb...
The complexity of dynamical laws governing 3D atmospheric flows associated with incomplete and noisy...
Sea surface temperature (SST) can be estimated from remotely-sensed images. Because of the sparsity ...
Physical environmental processes, such as the evolution of precipitation or the diffusion of chemica...
In this paper, we discuss the extraction motion vectors in weather radar images. Our goal is to prov...
International audienceThis study presents and compares two models for estimating motion in meteorolo...
An algorithm to estimate motion from satellite imagery is presented. Dense displacement fields are c...
International audienceThe paper describes an operational method of rainfall now-casting based on gro...
This thesis addresses the problem of estimating rainfall rates from satellite imagery. The potential...
International audienceAt small time scales, the spatio-temporal variability of downwelling surface s...
Geostationary satellites collect high-resolution weather data comprising a series of images which ca...
International audienceThis paper aims at estimating the apparent velocity from sequences of satellit...
In this paper we report the results of feasibility studies concerning the use of radars on polar orb...
The complexity of dynamical laws governing 3D atmospheric flows associated with incomplete and noisy...
Sea surface temperature (SST) can be estimated from remotely-sensed images. Because of the sparsity ...
Physical environmental processes, such as the evolution of precipitation or the diffusion of chemica...
In this paper, we discuss the extraction motion vectors in weather radar images. Our goal is to prov...
International audienceThis study presents and compares two models for estimating motion in meteorolo...
An algorithm to estimate motion from satellite imagery is presented. Dense displacement fields are c...
International audienceThe paper describes an operational method of rainfall now-casting based on gro...
This thesis addresses the problem of estimating rainfall rates from satellite imagery. The potential...
International audienceAt small time scales, the spatio-temporal variability of downwelling surface s...
Geostationary satellites collect high-resolution weather data comprising a series of images which ca...
International audienceThis paper aims at estimating the apparent velocity from sequences of satellit...
In this paper we report the results of feasibility studies concerning the use of radars on polar orb...
The complexity of dynamical laws governing 3D atmospheric flows associated with incomplete and noisy...
Sea surface temperature (SST) can be estimated from remotely-sensed images. Because of the sparsity ...