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首页> 外文期刊>Marine Geophysical Researches >Remote estimation of surficial seafloor properties through the application Angular Range Analysis to multibeam sonar data
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Remote estimation of surficial seafloor properties through the application Angular Range Analysis to multibeam sonar data

机译:通过将角范围分析应用于多波束声纳数据,远程估算表层海底特性

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摘要

The variation of the backscatter strength with the angle of incidence is an intrinsic property of the seafloor, which can be used in methods for acoustic seafloor characterization. Although multibeam sonars acquire backscatter over a wide range of incidence angles, the angular information is normally neglected during standard backscatter processing and mosaicking. An approach called Angular Range Analysis has been developed to preserve the backscatter angular information, and use it for remote estimation of seafloor properties. Angular Range Analysis starts with the beam-by-beam time-series of acoustic backscatter provided by the multibeam sonar and then corrects the backscatter for seafloor slope, beam pattern, time varying and angle varying gains, and area of insonification. Subsequently a series of parameters are calculated from the stacking of consecutive time series over a spatial scale that approximates half of the swath width. Based on these calculated parameters and the inversion of an acoustic backscatter model, we estimate the acoustic impedance and the roughness of the insonified area on the seafloor. In the process of this inversion, the behavior of the model parameters is constrained by established inter-property relationships. The approach has been tested using a 300 kHz Simrad EM3000 multibeam sonar in Little Bay, NH. Impedance estimates are compared to in situ measurements of sound speed. The comparison shows a very good correlation, indicating the potential of this approach for robust seafloor characterization.
机译:反向散射强度随入射角的变化是海底的固有属性,可以用于声学海底特征化方法。尽管多光束声纳在很宽的入射角范围内都能获得反向散射,但是通常在标准反向散射处理和镶嵌过程中会忽略角度信息。已经开发了一种称为“角度范围分析”的方法来保留反向散射角度信息,并将其用于远程估计海底特性。角范围分析从多波束声纳提供的声反向散射的逐束时间序列开始,然后针对海底坡度,波束方向图,随时间变化和角度变化的增益以及声纳区域校正反向散射。随后,从一系列连续的时间序列的堆叠中计算出一系列参数,这些时间序列近似于条幅宽度的一半。基于这些计算出的参数和声学反向散射模型的反演,我们估算了海底声阻抗和超声区域的粗糙度。在这种反演过程中,模型参数的行为受到已建立的属性间关系的约束。该方法已经在新罕布什尔州的小湾使用300 kHz Simrad EM3000多波束声纳进行了测试。将阻抗估计值与声速的原位测量结果进行比较。比较结果显示出很好的相关性,表明该方法具有强大的海底特征。

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