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首页> 外文期刊>Journal of low frequency noise, vibration and active control >A spatial correlation model for the horizontal non-isotropic ocean ambient noise vector field
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A spatial correlation model for the horizontal non-isotropic ocean ambient noise vector field

机译:水平非各向同性海洋环境噪声矢量场的空间相关模型

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摘要

The ocean ambient noise is one of interference fields of underwater acoustic channel. The design and use of any sonar system are bound to be affected by ocean ambient noise, so to research the spatial correlation characteristics of noise field is of positive significance to improving the performance of sonar system. Only wind-generated noise is considered in most existing ambient noise models. In this case, the noise field is isotropic in horizontal direction. However, due to those influencing factors, like rainfall, ships and windstorm, etc. for a real ocean environment, noise field becomes anisotropic horizontally and the spatial structure of ambient field also changes correspondingly. This paper presents a spatial correlation of the acoustic vector field of anisotropic field by introducing Von Mises probability distribution to describe horizontal directivity. Closed-form expressions are derived which relate the cross-correlation among the sound pressure and three orthogonal components of vibration velocity, besides, the influence of the non-uniformity of noise field on the correlation characteristics of noise vector field was analysed. The model presented in this paper can provide theoretical guidance for the design and application of vector sensors array. Furthermore, the achievement could be applied to front extraction, Green's function extraction, inversion for ocean bottom parameters, and so on.
机译:海洋环境噪声是水下声道通道的干涉场之一。任何声纳系统的设计和使用都必然受到海洋环境噪声的影响,因此研究噪声场的空间相关特性是提高声纳系统性能的积极意义。在大多数现有的环境噪声模型中仅考虑风产生的噪声。在这种情况下,噪声场在水平方向上是各向同性的。然而,由于这些影响因素,如降雨,船舶和风暴等,对于真正的海洋环境,噪声场变得水平各向异性,环境场的空间结构也相应地改变。本文通过引入von MISES概率分布来描述各向异性场的声学传染媒介领域来描述水平方向性的空间相关性。衍生闭合表达式,其涉及声压和振动速度的三个正交分量之间的互相关,并且分析了噪声场的不均匀性对噪声矢量场的相关特性的影响。本文提出的模型可以为矢量传感器阵列的设计和应用提供理论指导。此外,可以将成就应用于前置提取,绿色的功能提取,海底参数的反转,等等。

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