Title :
Innovative tools for radar signal processing Based on Cartan’s geometry of SPD matrices & Information Geometry
Author_Institution :
Strategy Technol. & Innovation Dept., THALES AIR Syst., Limours
Abstract :
New operational requirements for stealth targets detection in dense & inhomogeneous clutter are emerging (littoral warfare, low altitude asymmetric threats, battlefield in urban area...). Classical radar approaches for Doppler & array signal processing have reached their limits. We propose new improvements based on advanced mathematical studies on geometry of SPD matrix (symmetric positive definite matrix) and information geometry, using that radar data covariance matrices include all information of the sensor signal. First, information geometry allows to take into account statistics of radar covariance matrix (by mean of Fisher information matrix used in Cramer-Rao bound) to built a robust distance, called Jensen, Siegel or Bruhat-Tits metric. Geometry on ldquosymmetric conesrdquo, developed in frameworks of Lie group and Jordan algebra, provides new algorithms to compute matrix geometric means that could be used for ldquomatrix CFARrdquo. This innovative approach avoids classical drawbacks of Doppler processing by filter banks or FFT in case of bursts with very few pulses.
Keywords :
Doppler radar; Lie groups; array signal processing; clutter; fast Fourier transforms; geometry; matrix algebra; object detection; radar signal processing; Bruhat-Tits metric; Cartan geometry; Cramer-Rao bound; Doppler signal processing; Fisher information matrix; Lie group; array signal processing; clutter; covariance matrix; fast Fourier transforms; filter banks; information geometry; innovative tools; radar signal processing; stealth targets detection; symmetric positive definite matrix; Array signal processing; Clutter; Covariance matrix; Doppler radar; Information geometry; Object detection; Radar signal processing; Statistics; Symmetric matrices; Urban areas; Bruhat-Tits metric; Cartan-Hadamard Manifold; Information Geometry;
Conference_Titel :
Radar Conference, 2008. RADAR '08. IEEE
Conference_Location :
Rome
Print_ISBN :
978-1-4244-1538-0
Electronic_ISBN :
1097-5659
DOI :
10.1109/RADAR.2008.4720937