DocumentCode
3007340
Title
Optimum and adaptive array processing in frequency-wavenumber space
Author
Scharf, Louis L. ; Farden, D.C.
Author_Institution
Colorado State University, Fort Collins, Colorado
fYear
1974
fDate
20-22 Nov. 1974
Firstpage
604
Lastpage
609
Abstract
In this paper a frequency-domain adaptive array structure is derived that processes data in selected regions of frequency-wave-number space to provide an MMSE estimate of a signal component of the observed acoustic field. The desired "optimal" processor structure is derived by appealing to the Sherman-Morrison inversion lemma to invert the sum of a diagonal noise matrix and several diadic matrices corresponding to plane-wave propagating signal and interference fields. The structure reduces to a parallel structure of beamformer-gain elements whose beamformer directions (phase delays) and gains are unknown because of a priori ignorance concerning interference directions and levels. The structure is adapted to these uncertainties by forming a stochastic approximation algorithm for the gains of several beams directed to a finite set of possible interference directions.
Keywords
Acoustic arrays; Acoustic noise; Acoustic propagation; Adaptive arrays; Array signal processing; Delay; Frequency estimation; Interference; Signal processing; Uncertainty;
fLanguage
English
Publisher
ieee
Conference_Titel
Decision and Control including the 13th Symposium on Adaptive Processes, 1974 IEEE Conference on
Conference_Location
Phoenix, AZ, USA
Type
conf
DOI
10.1109/CDC.1974.270509
Filename
4045302
Link To Document