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Adaptive integrated network system of high-frequency underwater vision in near to port zones and sea constructions

I. P. Smirnov$^1$, A. A. Khilko$^2$, V. V. Kovalenko$^3$, A. G. Luchinin$^1$, E. A. Mareev$^1$, A. I. Malekhanov$^1$, A. I. Khilko$^1$, V. N. Kravchenko$^4$

Memoirs of the Faculty of Physics 2017. N 5.

  • Article
Annotation

For acoustic high-frequency zone vision near to sea constructions it is developed network method based on joint processing of a set of multistatic tomography projections, formed in the underwater channel by vertical radiating and received elements of the modulated pulse signals in the form of the bunches adapted with a waveguide. Efficiency of concrete systems of vision system in real conditions is investigated. Working capacity of a method was investigated in natural experiments.

Received: 2017 July 5
Approved: 2017 October 17
PACS:
92.10.-c Physical oceanography
92.10.Vz Underwater sound
Authors
I. P. Smirnov$^1$, A. A. Khilko$^2$, V. V. Kovalenko$^3$, A. G. Luchinin$^1$, E. A. Mareev$^1$, A. I. Malekhanov$^1$, A. I. Khilko$^1$, V. N. Kravchenko$^4$
$^1$Federal research center Institute of Applied Physics\
$^2$Lobachevsky Nizhni Novgorod National Research University\
$^3$Scientific council on a complex problem &lt;<hydrophysics>&gt; RAS</hydrophysics>\
$^4$&lt;&lt;CNII Atoll&gt;&gt;
Issue 5, 2017

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