DocumentCode :
1931726
Title :
Airborne radar STAP using long-memory clutter models
Author :
Bertacca, Massimo
Author_Institution :
Anal. & Simulation Group - Radar Syst. Anal. & Signal Process., ISL-ALTRAN S.p.A., Ospedaletto
fYear :
2008
fDate :
26-30 May 2008
Firstpage :
1
Lastpage :
6
Abstract :
Traditional analysis of airborne adaptive radars usually assumes the ideal condition of statistically independent and identically distributed (IID) secondary data. To the contrary, measured clutter data are spatially correlated and exhibit long-memory characteristics. In addition, clutter can appear heterogeneous and so the secondary data are no longer IID. The aim of this paper is to define an efficient simulator of long-range dependence (LRD) homogeneous or non-homogeneous clutter space-time steering vectors. To this end, multi-channel airborne radar measurement (MCARM) data have been analyzed to estimate the power spectral density (PSD) of space-time snapshots in real clutter environments. In this paper we will refer to the considered long-memory clutter models as to the LRDSTAP clutter models. LRDSTAP models extend the simplified general clutter model (GCM) by including the LRD characteristics of clutter PSDs. Simulated data from LRDSTAP are used to evaluate the impact of long-memory data on the convergence measure of effectiveness (MOE) of the sample matrix inversion (SMI) STAP processor. The presented method demonstrates reliable results when applied to MCARM data files including either spatially homogeneous or nonhomogeneous clutter.
Keywords :
adaptive radar; airborne radar; matrix inversion; radar clutter; radar signal processing; space-time adaptive processing; telecommunication channels; STAP; airborne adaptive radar; long-memory clutter model; long-range dependence; multichannel airborne radar measurement; power spectral density; sample matrix inversion; space-time steering vector; Airborne radar; Data analysis; Fractals; Image analysis; Image texture analysis; Radar clutter; Radar signal processing; Sea measurements; Sea surface; Signal analysis; LRD; MCARM; STAP;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Radar Conference, 2008. RADAR '08. IEEE
Conference_Location :
Rome
ISSN :
1097-5659
Print_ISBN :
978-1-4244-1538-0
Electronic_ISBN :
1097-5659
Type :
conf
DOI :
10.1109/RADAR.2008.4720939
Filename :
4720939
Link To Document :
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