Title :
Microwave Modelling of Rain Attenuation Fields using Disdrometer Measurements and Stochastic Methods
Author :
Marzano, F.S. ; Montopoli, M.
Author_Institution :
Dept. of Electron. Eng., Sapienza Univ. of Rome, Rome
Abstract :
Hydro-meteorological and radio-propagation applications can benefit from the capability to model time evolution of raindrop size distribution (RSD). In this respect this work presents a study to simulate synthetic time series of RSDs using a vectorial autoregressive approach and a semi-Markov chain. A large set of disdrometer measurements, acquired in different climatological sites, is analyzed in order to drive the RSD temporal simulator. Climatological differences of RSD data are quantitatively discussed. A spectral technique, based on an iterative adaptive fast-Fourier-transform technique, is also applied to transform the temporal series into rainfall spatial fields. Numerical examples of radar and radio- propagation parameters, such as co-polar reflectiviy and at Ka-band co-polar specific attenuation, are discussed by employing the rainfall space-time RSD simulator coupled with a raindrop scattering model valid for oblate raindrop ensembles.
Keywords :
Markov processes; atmospheric techniques; autoregressive processes; climatology; electromagnetic wave scattering; fast Fourier transforms; iterative methods; meteorological instruments; microwave propagation; rain; stochastic processes; time series; tropospheric electromagnetic wave propagation; climatological sites; disdrometer measurement; hydro-meteorological application; iterative adaptive fast-Fourier-transform technique; microwave modelling; model time evolution; radiopropagation application; rain attenuation field; raindrop scattering model; raindrop size distribution; rainfall space-time RSD simulator; semiMarkov chain; spectral technique; stochastic method; synthetic time series; temporal simulator; vectorial autoregressive approach; Autoregressive processes; Microwave modelling; Raindrop size distribution data; Rainfall attenuation and reflectivity; Stochastic methods;
Conference_Titel :
Antennas and Propagation, 2007. EuCAP 2007. The Second European Conference on
Conference_Location :
Edinburgh
Print_ISBN :
978-0-86341-842-6