Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

An Inverse Method for Drop Size Distribution Retrieval from Polarimetric Radar at Attenuating Frequency

Domain:

climate

Record type:

paperdataset
Creator:
AlcAndGos
Editor:
GéoEau
Publisher:
CCSDMDPI
Host:avatar
A method that formulates the retrieval of drop size distribution (DSD) parameters from polarimetric radar variables at attenuating frequency as the solution of an inverse problem is presented. The DSD in each radar bin is represented by a normalized Gamma distribution defined by three parameters (Dm,N0*,u). The direct problem that describes polarimetric radar observables - scattering and propagation terms - and their dependency on DSD parameters is analyzed based on T-matrix scattering simulations. The inverse algorithm and its application to the DSD retrieval are then presented. The inverse method is applied to an African Monsoon Multidisciplinary Analysis (AMMA) field campaign that deployed an X-band dual-polarization Doppler radar and optical disdrometers in Benin, West Africa, in 2006 and 2007. The dataset is composed of X-band polarimetric radar PPIs and disdrometer data for 15 organized convective systems observed in 2006. A priori information on DSD parameters (benchmark method) is derived from the polarimetric radar observables by applying power law relationships. The proposed retrieval method of DSD parameters leads to the following results as compared to the benchmark: (i) we found a better spatial consistency of the retrieved parameters, (ii) the reconstructed polarimetric radar observables are closer to the observations, (iii) The validation with disdrometer data confirms an improved estimation of the DSD parameters.

Visit

hal.science

Tags

X-BAND RADARTROPICAL RAINFALLCONVECTIVE RAINFALLATTENUATION CORRECTIONINVERSE PROBLEMDROP SIZE DISTRIBUTION RETRIEVALRADAR POLARIMETRYPRECIPITATION ATMOSPHERIQUEATTENUATIONCORRECTION+5

Licenses

https://about.hal.science/hal-authorisation-v1/info:eu-repo/semantics/OpenAccess

Similar

Characterization of Hydrometeors in Sahelian Convective Systems with an X-Band Radar and Comparison with In Situ Measurements. Part I: Sensitivity of Polarimetric Radar Particle Identification Retrieval and Case Study EvaluationPerformance of Using Cascade Forward Back Propagation Neural Networks for Estimating Rain Parameters with Rain Drop Size DistributionAutomatic Detection of Flooded Areas in Polarimetric Radar Images From the Sentinel-1 SatelliteA Practical Calibration Method for RGB Micro-Grid Polarimetric CamerasRetrieval of aerosol optical thickness and size distribution from the CIMEL Sun photometer over Inhaca Island, MozambiqueA new reflectivity index for the retrieval of surface soil moisture from radar data

Characterization of Hydrometeors in Sahelian Convective Systems with an X-Band Radar and Comparison with In Situ Measurements. Part I: Sensitivity of Polarimetric Radar Particle Identification Retrieval and Case Study Evaluation

Abstract The particle identification scheme developed by Dolan and Rutledge for X-band polarimetric

Performance of Using Cascade Forward Back Propagation Neural Networks for Estimating Rain Parameters with Rain Drop Size Distribution

The aim of our study is to estimate the parameters M (water content), R (rain rate) and Z (radar ref

Automatic Detection of Flooded Areas in Polarimetric Radar Images From the Sentinel-1 Satellite

The free availability of Synthetic Aperture Radar (SAR) data from the sentinel satellite offers a un

A Practical Calibration Method for RGB Micro-Grid Polarimetric Cameras

This is a preprint version of the paper to appear at IEEE Robotics and Automation Letters (RAL). The

Retrieval of aerosol optical thickness and size distribution from the CIMEL Sun photometer over Inhaca Island, Mozambique

Characterization of aerosol optical properties over southern Africa is needed to better understand t

A new reflectivity index for the retrieval of surface soil moisture from radar data

International audience A new approach based on the change detection technique is prop