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Array Modeling of Active Sonar Clutter

delete2008-04-01
delete12
PRE
AI
D
Douglas A. Abraham *
DOI:10.1109/JOE.2008.919604delete
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Abstract

Abstract

En 中文
Active sonar systems operating in shallow-water environments often deal with excessive false alarms, generically referred to as clutter, that are more numerous than expected for Rayleigh-distributed reverberation. The clutter probability density function, and therefore the probability of false alarm (P-fa), depends on the scattering sources, propagation conditions, sonar system, and signal processing. Clutter statistics are often approximated by the K-distribution where the shape parameter ((alpha) over tilde) provides an inverse relationship to P-fa with decreases in (alpha) over tilde representing an increase in P-fa. In this paper, the effect of sonar array processing on clutter statistics is evaluated by first modeling clutter at the hydrophone level and then analyzing the resulting K-distribution shape parameter after conventional beamforming. When the transmit-waveform bandwidth is narrowband with respect to the array processing and propagation consists primarily of lowangle paths, (alpha) over tilde was found to be separable into the product of a clutter-source scattering effect, an array processing effect, and a coupled transmit-waveform and propagation effect. The array effect was found to coarsely follow the array beamwidth, although precise evaluation is straightforward given the array beampattern. As might be expected, array design or processing that tends to increase the beamwidth was found to increase (alpha) over tilde. Uniform shading was seen to provide a practical, though not exact, lower bound on (alpha) over tilde for common array shading functions. For circular arrays with unaliased spatial sampling, an asymptotic beampattern was found to provide a very accurate approximation to (alpha) over tilde. These results should be useful in predicting the performance of sonar systems in clutter dominated areas, in the design of arrays and array processing, in the inversion of clutter data for clutter-source scattering parameters, or to improve signal processing
Keywords:
Active sonar
array processing
beamforming
clutter
K-distribution

Journal

IEEE Journal of Oceanic Engineering cover
IEEE Journal of Oceanic Engineering
IF:
5.3
Papers:
2.6K
Citations:
7.4K

Organization

No organization information available
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