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Processing Multibeam Backscatter Data

机译:处理多光束反向散射数据

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摘要

A new highly precise source of data has recently become available using multibeam sonar systems in hydrography. Multibeam sonar systems can provide hydrographic quality depth data as well as high-resolution seafloor sonar images. We utilize the seafloor backscatter strength data of each beam from multibeam sonar and the automatic classification technology so that we can get the seafloor type identification maps. In this article, analyzing all kinds of error effects in backscatter strength, data are based on the relationship between backscatter strength and seafloor types. We emphasize particularly analyzing the influences of local bottom slope and near nadir reflection in backscatter strength data. We also give the correction algorithms and results of these two influent factors. After processing the raw backscatter strength data and correcting error effects, we can get processed backscatter strength data which reflect the features of seafloor types only. Applying the processed backscatter strength data and mosaicked seafloor sonar images, we engage in seafloor classification and geomorphy interpretation in future research.
机译:最近在水文学中使用多波束声纳系统提供了一种新的高精度数据源。多波束声纳系统可以提供水文质量深度数据以及高分辨率海底声纳图像。我们利用多波束声纳的每个波束的海底反向散射强度数据和自动分类技术,以获得海底类型识别图。在本文中,分析了背向散射强度的各种误差影响,数据基于背向散射强度与海底类型之间的关系。我们特别强调在反向散射强度数据中分析局部底坡和近天底反射的影响。我们还给出了这两个影响因素的校正算法和结果。在处理了原始反向散射强度数据并校正了误差影响之后,我们可以获得仅反映海底类型特征的处理后反向散射强度数据。利用处理后的散射强度数据和镶嵌的海底声纳图像,我们在未来的研究中从事海底分类和地貌解释。

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