DocumentCode :
2764288
Title :
Wideband STAP (WB-STAP) for passive sonar
Author :
Pillai, S.U. ; Guerci, J.R. ; Pillai, S.R.
Author_Institution :
Dept. of Electr. Eng., Polytech. Univ., Brooklyn, NY, USA
Volume :
5
fYear :
2003
fDate :
22-26 Sept. 2003
Abstract :
This paper addresses an innovative method for passive sonar signal processing where it is required to suppress a field of moving acoustic interferes while simultaneously enhancing the signal from a weak moving source. Motivated by the Space-Time Adaptive Processing (STAP) technology for similar radar applications, we propose a solution to the passive broadband sonar problem using Wideband Space-Time Adaptive Processing (WB-STAP) in the frequency-space domain. The overall objective is to develop models of the source/receiver dynamics directly into the problem formulation and analyze time varying nature of the data vector and the covariance matrix by operating in the spatio-frequency domain. This allows STAP-like formulation for the broadband passive sonar in the space-frequency domain. In particular, by employing subaperture techniques and exploiting the underlying model using eigen-subspace methods it is possible to obtain optimum adaptive weight vectors that require significantly less number of data samples compared to conventional methods. In addition, this formulation allows simultaneous tracking of all targets present in the field of view by jointly estimating their arrival angles and Doppler parameters.
Keywords :
frequency-domain analysis; oceanographic techniques; sonar arrays; sonar signal processing; sonar tracking; space-time adaptive processing; underwater acoustic propagation; Doppler parameters; acoustic interference; adaptive weight vectors; arrival angles; broadband sonar; covariance matrix; data vector; eigensubspace method; frequency-space domain; moving source; passive sonar; sonar signal processing; source/receiver dynamics; space-frequency domain; space-time adaptive processing; spatiofrequency domain; subaperture techniques; weak source; wideband STAP; Acoustic signal processing; Adaptive signal processing; Covariance matrix; Radar applications; Radar signal processing; Radar tracking; Signal processing; Sonar applications; Space technology; Wideband;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
OCEANS 2003. Proceedings
Conference_Location :
San Diego, CA, USA
Print_ISBN :
0-933957-30-0
Type :
conf
DOI :
10.1109/OCEANS.2003.178353
Filename :
1283048
Link To Document :
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