使用拖曳式侧扫声纳和多波束回声测深仪的海底特征声学图像的比较

R. Dekeyzer, J. S. Byrne, J.D. Case, B. Clifford, W. Simmons
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引用次数: 6

摘要

最近,从多波束回声探测仪获得的图像数据质量有了显著改善。强度时间序列值来源于产生测深值的同一发射波束方向图。这种采样方法提供了一个具有同步测深和图像的数据集。本文介绍了用Klein系统2000拖曳式侧扫声纳和Reson 8100系列多波束回声测深仪成像海底特征的例子。所提出的多波束测深仪图像来源于为进行水深测量而形成的接收波束。比较的重点是深度小于40米,包括沿美国东北部调查的各种地形。调查的地区包括水文上重要的底部特征和用两种类型的系统成像的多种底栖生物栖息地。本文论证了将多波束测深仪的图像数据与多波束测深仪的测深数据一起采集和处理所能做出的贡献。图像数据可以在数据约简的处理和分析阶段提供补充信息。虽然最终的图像不如拖曳式侧扫声纳图像清晰,但最终的数据集确实提供了一些显着的优势。这种方法可以支持广泛的调查应用,包括:水文、搜索和定位、路线调查、栖息地测绘和海底表征。
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A comparison of acoustic imagery of sea floor features using a towed side scan sonar and a multibeam echo sounder
Significant improvements in the quality of imagery data available from multibeam echo sounders have recently been made. The intensity time series values are derived from the same transmit beam pattern that produces the sounding values. This sampling approach provides a dataset with co-located bathymetry and imagery. This paper presents examples of seafloor features imaged with both a Klein system 2000 towed side scan sonar and with Reson 8100 series multibeam echo sounders. The multibeam echo sounder imagery presented is derived from the receive beams formed to make the bathymetric measurements. The comparison focuses on depths shallower than 40 metres, and including a variety of terrains surveyed along the northeastern US. The areas investigated include hydrographically significant bottom features and multiple benthic habitats imaged with both types of systems. This paper demonstrates the contribution that can be made when the multibeam echo sounder imagery data is acquired and processed along with the bathymetry data from a multibeam echo sounder. The imagery data can provide complimentary information during the processing and analysis phases of data reduction. While the resulting imagery is not as sharp as the imagery from a towed side scan sonar, the resulting dataset does offer some significant advantages. This approach can support a wide range of survey applications including: hydrography, search and locate, route survey, habitat mapping, and seafloor characterization.
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