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Acoustic striation processing for ocean bottom characterization

机译:海底表征的声学突变加工

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Broad-band sound field excited by a moving source usually exhibit striations, whose structures are characterized by the propagation medium. Such relationship has been explored for underwater inverse problems, including sediment geoacoustic characterization, source localization and target recognition. The primary step for these applications is feature extraction by interference structure processing. Image processing methods based on the Radon transform, Hough transform and two-dimensional fast Fourier transform (FFT) have been used to process the interference structure to estimate the overall slope of the striations. These transforms do not allow extracting local properties of the striation pattern, e.g., the striation positions, which are also closely related to environment properties. In this paper, a multi-scale line filter based on the image Hessian matrix eigenvalues analysis is introduced and applied in searching for geometrical structures that can be regarded as a line. The location and slope of specific striation can be easily estimated from the filtered image for further applications. The possibility of using a set of striation positions for the geoacoustic characterization of a layered ocean bottom is discussed in this paper.
机译:由移动源激发的宽带声场通常表现出跨度,其结构的特征在于传播介质。已经探讨了这种关系,用于水下反向问题,包括沉积地理声学表征,源定位和目标识别。这些应用的主要步骤是通过干扰结构处理提取特征提取。图像处理方法基于氡变换,霍夫变换和二维快速傅里叶变换(FFT)用于处理干涉结构以估计条纹的总斜率。这些变换不允许提取条纹图案的局部特性,例如抗条纹位置,其与环境属性密切相关。本文介绍了一种基于图像Hessian矩阵特征值分析的多尺度线滤波器,并应用于寻找可以被视为一条线的几何结构。可以从滤波图像中容易地估计特定条纹的位置和斜率以进行进一步的应用。本文讨论了使用用于层状海底的地理声学表征的一组突变位置的可能性。

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