DocumentCode :
1773043
Title :
Lattice implementation of “superresolving” methods for meteorological objects spectra estimation
Author :
Rachkov, Dmytro S. ; Lekhovytskiy, David I. ; Semeniaka, Andrii V. ; Vovshin, Boris M. ; Laurukevich, Uladzimir U.
Author_Institution :
Kharkiv Nat. Univ. of Radio Electron., Kharkiv, Ukraine
fYear :
2014
fDate :
16-18 June 2014
Firstpage :
1
Lastpage :
4
Abstract :
The paper addresses a practical implementation of “superresolving” spectral estimation (SE) methods for the tasks of meteorological objects energy spectra reproduction in pulse Doppler weather radars. We demonstrate that the universal adaptive lattice filters (ALF) are an effective tool to solve this task. A specificity of ALF-based formation of spectral functions of various “superresolving” SE methods is described. The recurrent algorithm of ALF adjustment is presented. On each step of recursion, it includes one-fold correction of ALF parameters by algorithms of K - rank modification instead of usually applied K - fold correction of ALF parameters by algorithms of one-rank modification. We demonstrate lesser computational complexity and higher numerical stability of the proposed algorithm as compared with known ones. The results of proposed algorithm investigation in existing weather radar are presented.
Keywords :
Doppler radar; adaptive filters; computational complexity; lattice filters; matrix algebra; meteorological radar; ALF adjustment; ALF parameters; ALF-based formation; K-fold correction; K-rank modification; computational complexity; energy spectra reproduction; lattice implementation; meteorological objects spectra estimation; numerical stability; one-rank modification; pulse Doppler weather radars; recurrent algorithm; spectral functions; superresolving spectral estimation methods; universal adaptive lattice filters; Adaptive filters; Estimation; Lattices; Meteorology; Radar; Training; Vectors; “superresolving” spectral estimation methods; K - rank modification; adaptive lattice filter; meteorological object; pulse Doppler weather radar; recurrent adjustment algorithm;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Radar Symposium (IRS), 2014 15th International
Conference_Location :
Gdansk
Print_ISBN :
978-617-607-552-3
Type :
conf
DOI :
10.1109/IRS.2014.6869229
Filename :
6869229
Link To Document :
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