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High-frequency multibeam echo-sounder measurements of seafloor backscatter in shallow water: Part 1 - Data acquisition and processing

机译:浅海海底反向散射的高频多波束回声测深:第1部分-数据采集和处理

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摘要

Methods for processing multibeam echo-sounder (MBES) bathymetry data are well established, however, there is no universal and established approach to processing and interpretation of MBES backscatter data. The aim of this paper is to (1) detail the different backscatter logging methods implemented in modern high-frequency MBES systems used primarily in shallow water; (2) describe and suggest appropriate methods of data processing; and (3) discuss likely errors and artefacts expected from MBES backscatter processing. These issues are illustrated using data collected with a Reson SeaBat MBES in coastal shelf areas of Australia, although the methods and errors discussed are relevant to other high-frequency shallow-water MBES systems. Production of backscatter mosaics and analysis of backscatter for seafloor classification using MBES data are considered in Part 2 - Mosaic production, analysis and classification (Parnum and Gavrilov, 2011), published alongside this paper.
机译:很好地建立了用于处理多波束回声测深(MBES)测深数据的方法,但是,还没有一种通用的既定方法来处理和解释MBES背向散射数据。本文的目的是(1)详细介绍在主要用于浅水的现代高频MBES系统中实现的不同反向散射测井方法; (2)描述并提出适当的数据处理方法; (3)讨论了MBES反向散射处理可能产生的错误和伪影。使用Reson SeaBat MBES在澳大利亚沿海架子地区收集的数据说明了这些问题,尽管讨论的方法和错误与其他高频浅水MBES系统有关。与MBES数据一起生成背向散射镶嵌图和使用MBES数据进行海底分类的背向散射分析在与本文一同发布的第2部分-马赛克的产生,分析和分类(Parnum和Gavrilov,2011)中进行了讨论。

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