High resolution acoustic tomography based on backpropagation of waves

D. Sukhanov, Anzhela E. Kuzovova
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Abstract

A method of high-resolution acoustic tomography of scattering inhomogeneities based on the method of reverse time migration is proposed. An inhomogeneous background medium with a known distribution of refractive inhomogeneities is considered, where it is necessary to detect scattering inhomogeneities. Probing is carried out by broadband arbitrary waveforms. The method of reverse time migration is supplemented with linear filtering of the direct propagation field, which makes it possible to increase the resolution of reconstructed images. The results of numerical modeling and experiment are presented. Sounding was carried out in water at frequencies from 20 to 350 kHz using a signal with linear frequency modulation. The source of the ultrasonic signal was fixed and irradiated the objects under study in the water. The scattered signal was measured in a plane near the surface in water on a rectangular area with a step of less than 2 mm. Signal processing by the proposed method made it possible to reconstruct a three-dimensional image of scattering inhomogeneities with a resolution of about 7 mm. Comparison of the proposed method and the reverse time migration method showed that the proposed method allows obtaining a higher resolution.
基于波反向传播的高分辨率声层析成像
提出了一种基于逆时偏移法的高分辨率散射非均匀性声层析成像方法。考虑具有已知折射不均匀性分布的非均匀背景介质,其中需要检测散射不均匀性。探测是通过宽带任意波形进行的。在逆时偏移方法的基础上,对正传播场进行线性滤波,提高了重建图像的分辨率。给出了数值模拟和实验结果。探测在水中进行,频率从20到350千赫,使用线性调频信号。将超声信号源固定并照射在水中被研究对象上。散射信号是在一个步长小于2 mm的矩形区域内靠近水面的平面上测量的。利用该方法对信号进行处理,可以重建分辨率约为7 mm的散射不均匀性三维图像。与逆时偏移法的比较表明,所提方法可以获得更高的分辨率。
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