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Applications of Multibeam Backscatter: Using Multibeam Echosounder Backscatter to Characterize and Map Seafloor Features in Shallow and Deep Water

机译:MultiBeam Backsfatter的应用:使用MultiBeam Echosounder反向散射来表征和地图浅层和深水中的海底特征

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Recent developments in multibeam echosounder backscatter processing are now included in most commercially available processing software. These tools allow end users to produce properly corrected backscatter mosaics and add more robust qualitative and quantitative discrimination of seabed materials to their seafloor characterizations. This paper reviews backscatter processing and presents some examples that demonstrate the advantages of multibeam backscatter over conventional sidescan sonar. Fully corrected backscatter data increases confidence in interpretations of seabed features, and is an improved baseline data set for implementing automated mapping techniques, which can potentially produce more detailed maps in less time. The corrected backscatter is also more appropriate for integration with sediment samples and subsequent quantitative analysis used in seafloor classification systems. These mapping efforts are of benefit to engineering favorability assessments and other types of seafloor investigations.
机译:多次滨水区回波散射处理的最新进展现在包括在大多数商业上可获得的加工软件中。这些工具允许最终用户生产出正确校正的反向散射马赛克,并在海底材料中增强了海底材料的更强大的定性和定量辨别。本文评论了反散射处理,并展示了一些示例,展示了多次侧面侧义斯蒂克士索尔的优势。完全校正的反向散射数据增加了对海底特征的解释的置信度,并且是用于实现自动映射技术的改进的基线数据集,这可能在更少的时间内产生更详细的地图。校正的反向散射也更适合于与沉积物样本集成和随后用于海底分类系统的定量分析。这些绘图努力有利于工程利益评估和其他类型的海底调查。

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