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  4. Accuracy of Phase-Based Algorithms for the Estimation of the Specific Differential Phase Shift Using Simulated Polarimetric Weather Radar Data
 
research article

Accuracy of Phase-Based Algorithms for the Estimation of the Specific Differential Phase Shift Using Simulated Polarimetric Weather Radar Data

Grazioli, Jacopo  
•
Schneebeli, Marc  
•
Berne, Alexis  
2014
Ieee Geoscience And Remote Sensing Letters

The specific differential phase shift on propagation K-dp is widely employed in the study of precipitation, although little is known about the effective accuracy of its estimates. The aim of this letter is to analyze the quality of K-dp estimates, using realistic simulated fields of drop size distributions. Two classical and one recently proposed estimation algorithms are tested, which are chosen among the algorithms that use the measured and noisy total differential phase shift Psi(dp) as their main input. A data set of six simulated rain events, from which polarimetric radar variables can be derived, is employed in this letter. The mean normalized absolute error in the estimation of K-dp at the radar resolution volume scale ranges from 27% to 30% for all the algorithms proposed, and significant negative biases up to -50% emerge at the highest values of K-dp for the most biased algorithm. The new algorithm, which is based on Kalman filtering, is able to keep these localized bias values around -25% and outperforms the classical algorithms in terms of efficiency, correlation, and root-mean-square error.

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Type
research article
DOI
10.1109/Lgrs.2013.2278620
Web of Science ID

WOS:000332183500010

Author(s)
Grazioli, Jacopo  
Schneebeli, Marc  
Berne, Alexis  
Date Issued

2014

Publisher

Ieee-Inst Electrical Electronics Engineers Inc

Published in
Ieee Geoscience And Remote Sensing Letters
Volume

11

Issue

4

Start page

763

End page

767

Subjects

Data processing

•

polarimetric weather radar

•

specific differential phase shift

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LTE  
Available on Infoscience
April 2, 2014
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/102343
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