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Tomographic observation of shallow-water inhomogeneities in the case of probing by a focused high-frequency acoustic field. I. Structure of simulation model

机译:聚焦高频声场探测时浅水不均匀性的层析成像观察。一,仿真模型的结构

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摘要

We study the possibilities of acoustic tomography observation of small-size bodies in shallow-water layered oceanic waveguides within the framework of geometric acoustics. For increasing the spatial resolution and sensitivity in the considered inverse problem, we used the waveguide-matched focusing of the received and radiated fields into the region of expected location of the observed body. The algorithm of observation in this case consists of search for a global extremum of decision statistics, which is determined by the difference between the measured data and the hypothetic body location. Such hypotheses are formed on the basis of a priori information in the form of the waveguide model and the data on the structure of the observation system. For decreasing the influence of noise associated with the interference of fields in the waveguide, selection of separate tomographic ray projections with the subsequent incoherent accumulation of partial images is used. A tomographic shallow-water observation model based on such principles is analyzed.
机译:我们研究了在几何声学框架内在浅水层状海洋波导中对小型物体进行声学层析成像观察的可能性。为了提高所考虑的反问题中的空间分辨率和灵敏度,我们使用了波导匹配的接收场和辐射场聚焦,将其聚焦到被观察物体的预期位置区域。在这种情况下,观察算法包括搜索决策统计量的全局极值,该极值由测量数据与假设的身体位置之间的差异确定。这样的假设是基于先验信息形成的,该先验信息是波导模型的形式以及有关观测系统结构的数据。为了减小与波导中的场干扰相关的噪声的影响,使用了单独的层析X射线投影的选择以及随后部分图像的非相干累积。分析了基于这种原理的层析X射线浅水观测模型。

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