DocumentCode
1434273
Title
The Influence of Propagation Focusing on Clutter Statistics
Author
Harrison, Chris H.
Author_Institution
NATO Undersea Res. Centre (NURC), La Spezia, Italy
Volume
35
Issue
2
fYear
2010
fDate
4/1/2010 12:00:00 AM
Firstpage
175
Lastpage
184
Abstract
Fluctuations in reverberation (clutter) from scatterers at long range in shallow water can be affected by many mechanisms. Their statistics, in particular the scintillation index (SI), depend not only on the statistics of the scatterers (their physical distribution, shape, orientation, etc.) but on the outward and return propagation paths. This paper investigates the focusing effects due to forward scattering from weak undulations in the seabed. Some existing Fresnel-Kirchhoff theory for monostatic, vertical incidence on a 2-D surface is adapted to demonstrate the behavior of the intensity´s SI in bistatic geometry. In addition, using a simulation of bistatic geometry and a 1-D surface the intensity statistics are extended to include autocorrelation function and probability distribution. The behavior of these properties is investigated for various Gaussian-correlated roughnesses with or without an added component of uncorrelated roughness. Bistatic geometries include source and receiver moving with constant separation, and moving source with fixed receiver. Fairly modest vertical undulations can result in significant fluctuation due to reflection focusing with scintillation indices possibly greater than unity.
Keywords
clutter; fluctuations; scintillation; statistical distributions; Fresnel-Kirchhoff theory; Gaussian-correlated roughnesses; autocorrelation function; clutter statistics; fluctuations; probability distribution; propagation paths; return propagation paths; scintillation index; Clutter; focus; reverberation; scintillation index (SI);
fLanguage
English
Journal_Title
Oceanic Engineering, IEEE Journal of
Publisher
ieee
ISSN
0364-9059
Type
jour
DOI
10.1109/JOE.2009.2030970
Filename
5427056
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