In this paper, we present how we used neural networks (NNs) and a pyramidal approach to model the data obtained by a weather radar and to short-range forecast the rainfall behavior. Very short-range forecast is useful, for instance, for estimating the path attenuation in terrestrial point-to-point communications. Radial basis function NNs are used both to approximate the rain field and to forecast the parameters of this approximation in order to anticipate the movements and changes in geometric characteristics of significant meteorological structures. The procedure is validated by applying it to actual weather radar data and comparing the outcome with a linear forecasting method, the steady-state method, and the persistence method. The same approach is probably useful also for predicting the behavior of other meteorological phenomena like clusters of clouds observed from satellites.

Pyramidal rain field decomposition using Radial Basis Function neural networks for tracking and forecasting purposes

DELL'ACQUA, FABIO;GAMBA, PAOLO ETTORE
2003-01-01

Abstract

In this paper, we present how we used neural networks (NNs) and a pyramidal approach to model the data obtained by a weather radar and to short-range forecast the rainfall behavior. Very short-range forecast is useful, for instance, for estimating the path attenuation in terrestrial point-to-point communications. Radial basis function NNs are used both to approximate the rain field and to forecast the parameters of this approximation in order to anticipate the movements and changes in geometric characteristics of significant meteorological structures. The procedure is validated by applying it to actual weather radar data and comparing the outcome with a linear forecasting method, the steady-state method, and the persistence method. The same approach is probably useful also for predicting the behavior of other meteorological phenomena like clusters of clouds observed from satellites.
2003
Environmental Engineering/Energy covers resources concerned with the effects of humans on the environment, and the development of controls to minimize environmental degradation. This category also covers the development, production, use, application, conversion, and management of nonrenewable and renewable energy sources.
Esperti anonimi
Inglese
Internazionale
STAMPA
41 (1)
4
853
862
10
Tematica Ex SIR: Monitoraggio di fenomeni catastrofici mediante uso di immagini aree/satellitari e di sistemi informativi territoriali (Classif. Ex SIR:Articoli su riviste ISI )
REMOTE SENSING; DISASTER MANAGEMENT; RADAR
http://ieeexplore.ieee.org/document/1202971/
no
2
info:eu-repo/semantics/article
262
Dell'Acqua, Fabio; Gamba, PAOLO ETTORE
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/137324
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