Gabor atomic decomposition of Green's functions for geoacoustic inversion and segmentation of a shallow water environment

P. Oonincx, J. Hermand
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引用次数: 2

Abstract

This paper introduces a method that identifies acoustic transmission data with feature vectors for the segmentation of range-dependent shallow water areas. The measurement geometry consists of sonobuoy-like receivers drifting away from a fixed sound source. The data consist of the medium impulse response measured repeatedly along each buoy track (frequency-dependent Green's function). The feature vector entries are parameters obtained from a sparse, tree-based, matching pursuit decomposition of each response into Gabor atoms. The mutual distance of neighbor feature vectors is used to detect and localise main variations of the bottom geoacoustic properties and eventually isolate subareas of moderate variability. The method is tested with data from experiments of rapid environmental assessment (REA) ENVERSE 97-98.
浅水环境地球声反演与分割的Gabor原子分解格林函数
本文介绍了一种用特征向量识别声传输数据的方法,用于距离相关的浅水区分割。测量几何结构包括从固定声源漂移的声呐浮标状接收器。数据包括沿每个浮标轨迹重复测量的介质脉冲响应(频率相关的格林函数)。特征向量条目是通过将每个响应分解为Gabor原子的稀疏、基于树的匹配追踪分解获得的参数。利用相邻特征向量的相互距离来检测和定位海底地声性质的主要变化,最终分离出中等变化的子区域。用快速环境评价(REA) ENVERSE 97-98实验数据对该方法进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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