用垂直阵列检测海洋波导中的噪声信号

IF 1.1 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY Physics of Wave Phenomena Pub Date : 2022-01-10 DOI:10.3103/S1541308X21040051
V. M. Kuz’kin, S. A. Pereselkov, Yu. V. Matvienko, S. A. Tkachenko
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引用次数: 2

摘要

描述了利用垂直线性阵列对水声信息进行干涉处理。发现了由移动宽带噪声源形成的干涉图样的二维傅里叶变换的谱密度与阵列元素的数目之间的关系。估计了该处理的阵列增益和抗噪能力。分析了在输入信噪比范围内,阵列充分重构了噪声源的径向速度及其与接收机的距离。描述了基于内曼-皮尔逊准则的噪声信号检测问题的解决方法。得到了正确检测概率和虚警概率与信噪比和阵列元素个数的函数表达式。计算噪声信号检测曲线。与单个接收机相比,估计了该阵列的信号检测效率。
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Detection of a Noise Signal in an Oceanic Waveguide Using a Vertical Array

Interferometric processing of hydroacoustic information using a vertical linear array is described. A relationship is found between the spectral density of the two-dimensional Fourier transform of the interference pattern formed by a moving broadband noise source and the number of the array elements. The array gain and the noise immunity of the processing are estimated. Analysis is given to the region of the input signal-to-noise ratios for which the array adequately reconstructs the radial velocity of the noise source and its distance from the receiver. The method for solving the noise signal detection problem on the basis of the Neyman–Pearson criterion is described. Expressions are obtained for the correct detection and false alarm probabilities as a function of the signal-to-noise ratio and the number of the array elements. Noise signal detection curves are calculated. The signal detection efficiency of the array is estimated in comparison to a single receiver.

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来源期刊
Physics of Wave Phenomena
Physics of Wave Phenomena PHYSICS, MULTIDISCIPLINARY-
CiteScore
2.50
自引率
21.40%
发文量
43
审稿时长
>12 weeks
期刊介绍: Physics of Wave Phenomena publishes original contributions in general and nonlinear wave theory, original experimental results in optics, acoustics and radiophysics. The fields of physics represented in this journal include nonlinear optics, acoustics, and radiophysics; nonlinear effects of any nature including nonlinear dynamics and chaos; phase transitions including light- and sound-induced; laser physics; optical and other spectroscopies; new instruments, methods, and measurements of wave and oscillatory processes; remote sensing of waves in natural media; wave interactions in biophysics, econophysics and other cross-disciplinary areas.
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