Ship-noise based geoacoustic inversion via particle filtering of vertical specific acoustic impedance

Qunyan Ren, J. Hermand
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引用次数: 2

Abstract

This paper presents a sequential approach to infer sediment geoacoustic properties from the observation of vertical specific acoustic impedance due to ship noise. This acoustic quantity does not require knowledge of the source and is sensitive to ocean bottom properties including density. The approach is demonstrated for the characterization of sediment off the small Senegalese coast during EHL-IRD joint experiments [ECOAO 13]. The noise field due R/V Antea sailing parallel to the coast was recorded on a vertical, multi-wavelength pressure-gradient array (EHL) from which impedance data was derived. A particle filter (PF) simultaneously tracks the range variations of impedance at a number of discrete frequencies in order to output a sequence of environmental parameter estimates with their associated uncertainties in the form of posterior probability densities (PPDs). The range-averaged inversion results are in good agreement with those produced by a classical batch inversion method based on a genetic algorithm (GA). Apparent inhomogeneity of the ocean bottom is observed, which is consistent with the sieving analysis of sediment grab samples collected at two different locations. When compared to batch processing, the computational efficiency and robustness of particle filtering are due to the capacity of iteratively updating the estimated PPDs, as is demonstrated by implementing the inversion with different particle sizes, of 200, 300 and 400.
基于船舶噪声的垂直比声阻抗粒子滤波地球声反演
本文提出了一种通过观测船舶噪声引起的垂直比声阻抗来推断沉积物地声特性的序列方法。这种声量不需要了解声源,而且对包括密度在内的海底特性很敏感。在ell - ird联合实验期间,该方法被证明用于表征塞内加尔小海岸的沉积物[ECOAO 13]。在垂直多波长压力梯度阵列(EHL)上记录了R/V Antea平行海岸航行时的噪声场,并由此导出了阻抗数据。粒子滤波器(PF)同时跟踪多个离散频率下阻抗的范围变化,以便以后验概率密度(PPDs)的形式输出一系列环境参数估计及其相关的不确定性。距离平均反演结果与经典的基于遗传算法的批处理反演结果吻合较好。观察到海底明显的不均匀性,这与在两个不同地点采集的沉积物抓取样品的筛分分析一致。与批处理相比,粒子滤波的计算效率和鲁棒性是由于迭代更新估计ppd的能力,正如在200、300和400不同粒径的反演中所证明的那样。
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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