In this paper, we present an algorithm for the automated removal of nonprecipitation related echoes such as atmospheric anomalous propagation (AP) in the lower elevations of meteorological-radar volume scans. The motivation for the development of this technique is the need for an objective quality control algorithm that minimizes human interaction. The algorithm uses both textural and intensity information obtained from the two lower-elevation reflectivity maps. The texture of the reflectivity maps is analyzed with the help of multifractals. Four multifractal exponents are computed for each pixel of the reflectivity maps and are compared to a strict and a soft threshold. Pixels with multifractal exponents larger than the strict threshol...
The resolution of the rainfall data usually provided by operational C-band radar networks of Western...
International audienceRainfall data contains numerous zero values, either real or spurious, especial...
Universal Multifractals (UM) have been extensively used to model and simulate geophysical fields ext...
In this paper, we present an algorithm for the automated removal of nonprecipitation related echoes ...
In this paper we present an automatic algorithm for the removal of echoes that are caused due to ano...
International audienceRadar data are used to characterize the spatial variability of rainfall, in pa...
International audienceIn this work, the 2D-WTMM multifractal approach was applied to analysis the ra...
The presence of rain over oceans interferes with the measurement of sea surface wind speed and direc...
The intensity returns obtained by a radar from precipitation are well known to fluctuate violently i...
One of the main features of the rainfall field is its intermittency. Furthermore, a rainfall data se...
This study deals with the identification of precipitation and ground echoes in radar images using th...
The resolution of the rainfall data usually provided by operational C-band radar networks of Western...
International audienceRainfall data contains numerous zero values, either real or spurious, especial...
Universal Multifractals (UM) have been extensively used to model and simulate geophysical fields ext...
In this paper, we present an algorithm for the automated removal of nonprecipitation related echoes ...
In this paper we present an automatic algorithm for the removal of echoes that are caused due to ano...
International audienceRadar data are used to characterize the spatial variability of rainfall, in pa...
International audienceIn this work, the 2D-WTMM multifractal approach was applied to analysis the ra...
The presence of rain over oceans interferes with the measurement of sea surface wind speed and direc...
The intensity returns obtained by a radar from precipitation are well known to fluctuate violently i...
One of the main features of the rainfall field is its intermittency. Furthermore, a rainfall data se...
This study deals with the identification of precipitation and ground echoes in radar images using th...
The resolution of the rainfall data usually provided by operational C-band radar networks of Western...
International audienceRainfall data contains numerous zero values, either real or spurious, especial...
Universal Multifractals (UM) have been extensively used to model and simulate geophysical fields ext...