Bathymetric sidescan sonar : a system dedicated to rapid environment assessment

B. Zerr, S.L. Goanvic, B. L. Breton, C. Genty
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引用次数: 5

Abstract

The simultaneous acquisition of seabed backscattering and bathy-morphology can be achieved either by multibeam echo sounder or by bathymetric sidescan sonar. For rapid environment assessment (REA) prior to conduct mine counter measure operations, the sonar image, representing the seabed backscattering, is the primary source of information and the bathy-morphology the secondary one. Giving preference to the acquisition of the sonar image leads to operate at shallow grazing angle with high resolution imaging systems. Hence, the bathymetric sidescan sonar is well suited to complete the primary task of high resolution seabed imaging and the secondary task of acquiring simultaneously the bathy-morphology. Based on a commercial system, GESMA has developed a high resolution bathymetric sidescan sonar. After a description of the system and the array processing techniques which provides simultaneously the high resolution image and the bathy-morphology, the paper presents the experimental results from several sea trials conducted in various environments (Iroise sea-FR, Lyon gulf-FR, La Corona-SP, Ligurian Sea-IT, Victoria Harbor-CA). The analysis of these results demonstrates the potential and the limitations of the bathymetric sidescan sonar.
测深侧扫声纳:一种用于快速环境评估的系统
多波束回声测深仪和水深侧扫声纳都可以实现海底后向散射和海底形貌的同时采集。在开展水雷对抗作业前的快速环境评估中,声纳图像是代表海底后向散射的主要信息来源,深海形态是次要信息来源。优先获取声纳图像导致高分辨率成像系统以浅掠角操作。因此,水深侧扫声纳非常适合完成高分辨率海底成像的首要任务和同时获取海底形态的次要任务。基于商业系统,GESMA开发了一种高分辨率测深侧扫声纳。在描述了该系统和阵列处理技术,同时提供高分辨率图像和深海形态之后,本文介绍了在不同环境(Iroise sea- fr, Lyon gulf-FR, La Corona-SP, Ligurian sea- it, Victoria harbour - ca)进行的几次海上试验的实验结果。对这些结果的分析表明了测深侧扫描声纳的潜力和局限性。
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