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Geoacoustic Inversions of Horizontal and Vertical Line Array Acoustic Data From a Surface Ship Source of Opportunity

机译:水面舰船机会源水平和垂直线阵声数据的地声反演

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摘要

The application of an inversion methodology produces the first demonstration of a simultaneous solution for geoacoustic and source track parameters from acoustic data collected in a shallow-water, sandy sediment environment. Inversion solutions from data collected in the 2006 Shallow Water Experiment (SW06) are extracted from noise measurements of a surface ship source on an L-array. The methodology includes a screening algorithm to determine a set of frequencies for the inversion data. In addition, the methodology assesses the accuracy of the inversion solution and incorporates an estimation of parameter value uncertainties. The solution from the inversion of the horizontal component of the L-array data from the surface ship source before its closest point of approach (CPA) is used to construct modeled propagation loss for comparison with observed received level (RL) structure as the source departs from CPA. Inversion of the data from a single element in the vertical component of the L-array produces a solution that agrees with the solution obtained from the inversion of horizontal subaperture data. Also, modeled transmission loss (TL) structure obtained from the single-element inversion solution reproduces the depth dependence of the RL structure observed at other elements of the vertical component of the L-array.
机译:反演方法的应用首次证明了在浅水,沙质沉积物环境中收集的声学数据同时解决地声和源径迹参数的问题。从2006年浅水实验(SW06)中收集的数据得出的反演解是从L阵列上水面舰船源的噪声测量中提取的。该方法包括用于确定反演数据的一组频率的筛选算法。另外,该方法评估了反演解的准确性,并结合了参数值不确定性的估计。来自水面舰艇源的L阵列数据水平分量在其最接近点(CPA)之前取反的解决方案用于构建模型化的传播损失,以便与源离开时观察到的接收水平(RL)结构进行比较来自CPA。来自L阵列垂直分量中单个元素的数据反转产生的解与从水平子孔径数据反转获得的解一致。而且,从单元素反演解决方案获得的建模传输损耗(TL)结构再现了在L阵列垂直分量的其他元素处观察到的RL结构的深度依赖性。

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