DocumentCode :
631160
Title :
Radar detection for non-stationary time-Doppler signal based on Fréchet distance of geodesic curves on covariance matrix information geometry manifold
Author :
Barbaresco, F.
Author_Institution :
Surface Radar Domain, Tech. Directorate, Thales Air Syst., Limours, France
Volume :
1
fYear :
2013
fDate :
19-21 June 2013
Firstpage :
307
Lastpage :
312
Abstract :
New challenge in Radar is the processing of non-stationary signal corresponding to fast time variation of Doppler Spectrum in one burst. We can observe this phenomenon for high speed or abrupt Doppler variations of clutter or target signal but also in case of target migration during the burst duration due to high range resolution. We will assume that each non-stationary target signal in one burst can be split into several short signals with less Doppler resolution but stationary, represented by time sequence of stationary covariance matrices or a geodesic polygon on covariance matrix manifold. For micro-Doppler analysis of these cases, we adapt the Fréchet distance between two curves in the plane with a natural extension to more general geodesic curves in abstract metric spaces used for covariance matrix manifold. This new approach could be used for robust detection of target with non-stationary Time-Doppler spectrum (NS-OS-HDR-CFAR: Non-Stationary Ordered Statistic High Doppler Resolution CFAR), False Alarm filtering for inhomogeneous clutter (statistics of plots Time-Doppler fluctuation), but also emerging civil applications like wind-shear, micro-burst, downdraft and wake-vortex detection.
Keywords :
Doppler radar; covariance matrices; differential geometry; filtering theory; radar clutter; radar detection; radar resolution; Doppler variation; Frechet distance; NS-OS-HDR-CFAR; abstract metric spaces; burst duration; civil application; covariance matrix information geometry manifold; false alarm filtering; geodesic curves; geodesic polygon; high range resolution; inhomogeneous clutter; microDoppler analysis; nonstationary ordered statistic high Doppler resolution; nonstationary target signal; nonstationary time-Doppler signal; nonstationary time-Doppler spectrum; radar detection; stationary covariance matrices; statistics; target detection; target migration; time sequence; time variation; time-Doppler fluctuation; Covariance matrices; Doppler effect; Doppler radar; Information geometry; Manifolds; Measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Radar Symposium (IRS), 2013 14th International
Conference_Location :
Dresden
Print_ISBN :
978-1-4673-4821-8
Type :
conf
Filename :
6581105
Link To Document :
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