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S. D. Chuprov (1982)
Ocean Acoustics. Current State
G. Kuznetsov, V. Kuz’kin, S. Pereselkov, D. Prosovetskiy (2016)
Wave method for estimating the sound source depth in an oceanic waveguidePhysics of Wave Phenomena, 24
G. Kuznetsov, V. Kuz’kin, S. Pereselkov, I. Kaznacheev, V. Grigor’ev (2017)
Interferometric method for estimating the velocity of a noise sound source and the distance to it in shallow water using a vector-scalar receiverPhysics of Wave Phenomena, 25
I. Kaznacheev, G. Kuznetsov, V. Kuz’kin, S. Pereselkov (2018)
An Interferometric Method for Detecting a Moving Sound Source with a Vector-Scalar ReceiverAcoustical Physics, 64
T. Besedina, G. Kuznetsov, V. Kuz’kin, S. Pereselkov, D. Prosovetskiy (2015)
Estimation of the depth of a stationary sound source in shallow waterPhysics of Wave Phenomena, 23
V. Kuz’kin, S. Pereselkov, G. Kuznetsov, I. Kaznacheev (2018)
Interferometric Direction Finding by a Vector-Scalar ReceiverPhysics of Wave Phenomena, 26
G. Kuznetsov, V. Kuz’kin, S. Pereselkov (2017)
Spectrogram and localization of a sound source in shallow waterAcoustical Physics, 63
L. M. Brekhovskikh, Yu. P. Lysanov (2013)
Fundamentals of Ocean Acoustics, 2nd ed. Springer Series on Wave Phenomena
(2013)
Lysanov, Fundamentals of Ocean Acoustics, 2nd ed
G. Kuznetsov, V. Kuz’kin, S. Pereselkov, I. Kaznacheev (2017)
Noise source localization in shallow waterPhysics of Wave Phenomena, 25
(1982)
Interference Structure of Sound in a Layered Ocean,
Results of a computer simulation of the resolution of three noise sources with different intensities against the background of isotropic noise in an oceanic waveguide are presented. A comparative analysis of the error in determining their coordinates (bearing, radial velocity, distance, depth) is performed. A computational experiment is implemented based on the interferometric method of source localization using vector-scalar receivers.
Physics of Wave Phenomena – Springer Journals
Published: May 30, 2018
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