DocumentCode :
2058134
Title :
Enhanced processing for a towed array using an optimal noise canceling approach
Author :
Sullivan, Edmund J. ; Candy, James V.
Author_Institution :
EJS Consultants, Portsmouth, RI
fYear :
2005
fDate :
17-23 Sept. 2005
Firstpage :
1093
Abstract :
Noise self-generated by a surface ship towing an array in search of a weak target presents a major problem for the signal processing especially if broadband techniques are being employed. In this paper we discuss the development and application of an adaptive noise cancelling processor capable of extracting the weak far-field acoustic target in a noisy ocean acoustic environment. The fundamental idea for this processor is to use a model-based approach incorporating both target and ship noise. Here we briefly describe the underlying theory and then demonstrate through simulation how effective the canceller and target enhancer perform. The adaptivity of the processor not only enables the "tracking" of the canceller coefficients, but also the estimation of target parameters for localization. This approach which is termed "joint" cancellation and enhancement produces the optimal estimate of both in a minimum (error) variance sense
Keywords :
adaptive signal processing; array signal processing; geophysical signal processing; oceanographic techniques; signal denoising; underwater sound; adaptive noise cancelling processor; canceller coefficient tracking; far-field acoustic target; noise self-generation; noisy ocean acoustic environment; optimal noise canceling; signal enhancement; signal processing; surface ship; towed array; Acoustic applications; Acoustic noise; Acoustic signal processing; Adaptive signal processing; Array signal processing; Marine vehicles; Noise cancellation; Oceans; Sea surface; Working environment noise;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
OCEANS, 2005. Proceedings of MTS/IEEE
Conference_Location :
Washington, DC
Print_ISBN :
0-933957-34-3
Type :
conf
DOI :
10.1109/OCEANS.2005.1639902
Filename :
1639902
Link To Document :
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