压力反演回声测深仪声速剖面反演及积图重建

Xuegang Shi, Hangfang Zhao
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引用次数: 0

摘要

压力倒转回声测深仪(pie)是一种锚定在海底测量垂向声传播时(VATT)的海洋观测仪器。利用最严重经验模态(GEM)和最优插值方法反演声速分布,重构声速场(SSF)。垂直SSP可以看作是三维SSF中的一个已知观测值,但实际上这些观测值的数量非常少,这给SSF的重建带来了挑战。为了解决这一问题,本文引入了图形信号处理(GSP)。SSF被建模为一个产品图,该产品图可以分解为两个较小的因子图。这样可以将积图上的原始搜索空间简化为两个更小空间的并,从而只需观察积图上的一小部分顶点就可以获得更精确的SSF重构结果。除了产品图的底层结构外,利用图谱分析中的带宽限制特性重构SSF。数值结果表明,该方法在重建SSF时具有较好的性能和较低的均方根误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sound Speed Profiles Inversion by Pressure Inverted Echo Sounder and Reconstruction on Product Graph
Pressure inverted echo sounder (PIES) is an ocean observation instrument which is anchored to the seabed and measures the vertical acoustic travel time (VATT). Gravest Empirical Mode (GEM) and Optimal Interpolation are used to inverse sound speed profiles (SSPs) and reconstruct sound speed field (SSF) with the data of PIES array. A vertical SSP can be regarded as a known observation in three-dimension SSF but in fact the number of these observations is very small that leads to a challenge for reconstruction of SSF. To circumvent such an issue, graph signal processing (GSP) is introduced in this paper. The SSF is modeled as a product graph that can be decomposed into two smaller factor graphs. In this way, the original search space on product graph is reduced into the union of two much smaller spaces so that more accurate reconstruction results of SSF can be obtained by observing only a small subset of vertices on product graph. Besides the underlying structure of product graph, the bandlimited characteristic in graph spectrum analysis is leveraged to reconstruct SSF. The numerical results show that our proposed method performs better and achieves lower root mean square error (RMSE) in reconstruction of SSF.
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