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首页> 外文期刊>Marine Geology >Predictive mapping of seabed substrata using high-resolution multibeam sonar data: A case study from a shelf with complex geomorphology
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Predictive mapping of seabed substrata using high-resolution multibeam sonar data: A case study from a shelf with complex geomorphology

机译:使用高分辨率多波束声纳数据的海底地层预测制图:以地貌复杂的架子为例

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This study explores the full potential of high-resolution multibeam data for the automated and accurate mapping of complex seabed features under a predictive modelling framework. For an area of seabed on the Carnarvon shelf in Western Australia, morphometric variables and textural measures were derived from multibeam bathymetry and backscatter data. Several feature extraction approaches were applied to backscatter angular response curves to obtain new features. These derivatives and new features were used separately and in combination in the predictions. Despite the complex distribution of various hard substrata within the study area, we achieved a nearly perfect prediction of "hard vs soft" seabed types with an AUC (Area Under Curve) close to 1.0. The predictions were also satisfactory for gravel, sand and mud content, with R-2 values that range from 0.55 to 0.73. This study demonstrates that using a full range of derivatives and new features from both multibeam bathymetry and backscatter data optimises the accuracy of seabed mapping. From the modelled relationships between sediment properties and multibeam data, we confirmed that coarser sediment generally generates stronger backscatter return. Importantly, the results again highlight the advantages of applying proper feature extraction approaches over using original backscatter angular response curves. Crown Copyright (C) 2014 Published by Elsevier B.V. All rights reserved.
机译:这项研究探索了高分辨率多波束数据在预测建模框架下自动,精确地绘制复杂海底特征的全部潜力。对于西澳大利亚州Carnarvon陆架上的海床区域,形态学变量和结构度量是从多波束测深和反向散射数据得出的。几种特征提取方法被应用于反向散射角响应曲线以获得新的特征。这些导数和新功能在预测中分别使用或组合使用。尽管研究区域内各种硬质基质的分布复杂,但我们通过接近1.0的AUC(曲线下面积)实现了“硬质与软质”海底类型的近乎完美的预测。对于砾石,沙子和泥浆含量的预测也令人满意,R-2值范围从0.55到0.73。这项研究表明,使用多波束测深和反向散射数据的全部衍生工具和新功能可以优化海床制图的准确性。从沉积物特性与多波束数据之间的模型关系中,我们证实较粗的沉积物通常会产生较强的反向散射返回。重要的是,结果再次凸显了应用适当的特征提取方法优于使用原始反向散射角响应曲线的优势。官方版权(C)2014,Elsevier B.V.保留所有权利。

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