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Seabed segmentation using a combination of high frequency sensors

机译:使用高频传感器的组合海底分割

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Segmentation of the seabed in shallow water areas is of particular importance for several military and civilian applications. In this context, the SACLANT Undersea Research Centre is currently developing a procedure which consists ofsimultaneously operating three different acoustic sensors which are able to provide complementary information about an area of interest. A 300kHz multibeam echosounder provides high resolution bathymetry and backscattering strength mapping. A sidescansonar operating at the same frequency provides information about backscattering at low grazing as well as textural imaging. And thirdly, signals from a vertical echosounder are processed which enables a rough discrimination among various seabed types andcomplementary information on bathymetry. The combination of these three sensors with the use of unsupervised segmentation algorithms performed on sidescan images produce a high resolution mapping of the area. The testing of this procedure has beensuccessfully performed on different well known sites using video imaging, sediment grab samples and photography. In this paper, the procedure is detailed and illustrated by one site survey. The limitation of such approach is stated and the way ahead isdiscussed.
机译:浅水区海床的分割对于若干军事和民用应用特别重要。在这种情况下,Saclant Undersea研究中心目前正在开发一种程序,该程序包括一个可以实现三种不同的声学传感器,该传感器能够提供有关感兴趣领域的互补信息。 300kHz Multibeam Echosounder提供高分辨率的沐浴和反向散射强度映射。以相同频率运行的SideScansonar提供有关低放牧以及纹理成像的关于反向散射的信息。第三,处理来自垂直过度的信号,从而实现了各种海底类型的粗略辨别和浴约集的信息。这三个传感器的组合利用在SideScan图像上执行的无监督分割算法产生了该区域的高分辨率映射。使用视频成像,沉积物抓取样品和摄影,在不同众所周知的网站上进行了对该过程的测试。在本文中,该过程由一个现场调查详细说明和说明。提出了这种方法的限制,并以前方isdissed方式。

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