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Angular range analysis of acoustic themes from Stanton Banks Ireland: A link between visual interpretation and multibeam echosounder angular signatures

机译:来自爱尔兰斯坦顿银行的声学主题的角度范围分析:视觉解释与角度签名下的多波束回声之间的联系

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摘要

Acoustic backscatter mosaics derived from multibeam and sidescan sonars are often used to estimate seafloor type and composition, which are important parameters in the description of benthic habitats. However, due to limitations of the mosaicking technique, backscatter mosaics are restricted in their capacity to unambiguously discriminate seafloor properties. A more adequate technique to characterize the seafloor is the analysis of backscatter angular response, since this response is an intrinsic property of the seafloor. Angular response analysis sometimes lacks spatial resolution, however, as this approach is limited to the swath width of the sonar. In this paper, we propose an approach to combine mosaicking and angular response analysis techniques in an attempt to take advantage of both the spatial resolution of the mosaic, and the angular resolution derived from the angular response analysis. The proposed method for analyzing the backscatter mosaic together with the backscatter angular response is applied to the acoustic backscatter acquired by a Simrad EM1002 multibeam sonar (95-98 kHz) on Stanton Banks, to the west of Scotland. First, a normalized acoustic backscatter mosaic is prepared for the survey area. Then, visual interpretation of the mosaic produces areas on the seafloor with similar textural patterns that we call acoustic themes. Finally, the average backscatter angular response of all the backscatter samples that fall within the same acoustic theme, regardless of the acquisition line they belong to, is compared to a formal mathematical model that links acoustic backscatter observations to seafloor properties. The inversion of the model is accomplished with a constrained iterative method known as angular range analysis (ARA), which produces estimates of the same acoustic impedance, roughness and the mean grain size of the insonified area of the seafloor. The results of the ARA inversion are compared to bottom photographs acquired in the area delimited by the acoustic theme, showing a very good correlation. The ability to discriminate benthic habitats may therefore be improved using this approach.
机译:来自多波束和侧扫声纳的声学背向散射马赛克通常用于估计海底类型和组成,这是描述底栖生境的重要参数。但是,由于镶嵌技术的局限性,反向散射镶嵌的能力受到了限制,无法明确地区分海底特性。表征海底的一种更适当的技术是分析反向散射角响应,因为该响应是海底的固有属性。角度响应分析有时缺乏空间分辨率,但是,由于这种方法仅限于声纳的条带宽度。在本文中,我们提出了一种将镶嵌和角度响应分析技术相结合的方法,以尝试利用镶嵌的空间分辨率和从角度响应分析得出的角度分辨率。所提出的用于分析背向散射镶嵌以及背向散射角响应的方法,被应用于苏格兰西部斯坦顿河岸上的Simrad EM1002多波束声纳(95-98 kHz)所获得的声学背向散射。首先,为调查区域准备了标准化的声学反向散射镶嵌图。然后,对马赛克的视觉解释会在海底产生具有相似纹理图案的区域,我们称之为声学主题。最后,将属于相同声学主题的所有反向散射样本的平均反向散射角响应(无论它们属于哪个采集线)都与将声学反向散射观测值与海底特性相关联的正式数学模型进行比较。模型的转换是通过称为角度范围分析(ARA)的约束迭代方法完成的,该方法可得出相同的声阻抗,粗糙度和海底被声区域的平均晶粒尺寸的估计值。将ARA反演的结果与在以声学主题为界的区域中获取的底部照片进行比较,显示出很好的相关性。因此,使用这种方法可以提高区分底栖生境的能力。

著录项

  • 来源
    《Applied Acoustics》 |2009年第10期|1298-1304|共7页
  • 作者单位

    Center for Coastal and Ocean Mapping, University of New Hampshire, Durham, NH 03824, USA;

    Centre for Coastal and Marine Research, School of Environmental Sciences, University of Ulster, Cromore Road, Coleraine Co. Londonderry 6752 1SA, UK;

    Center for Coastal and Ocean Mapping, University of New Hampshire, Durham, NH 03824, USA;

    Center for Coastal and Ocean Mapping, University of New Hampshire, Durham, NH 03824, USA;

    Center for Coastal and Ocean Mapping, University of New Hampshire, Durham, NH 03824, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    multibeam sonar; backscatter; benthic habitat; seabed properties; acoustic classification;

    机译:多束声纳后向散射底栖生境;海底性质;声学分类;
  • 入库时间 2022-08-17 13:31:15

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