Sea beam sidelobe interference cancellation

D. Alexandrou
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引用次数: 4

Abstract

The Sea Beam multibeam bathymetric system is in operation aboard research vessels worldwide. While it has contributed greatly in advancing the understanding of the deep-sea floor, several types of bathymetric artifacts have been identified in its contoured output which could be mistaken for sea floor structure. Among those, the "tunnel" effect results from sidelobe interference caused by the near specular return and is most prominent when the sea floor is relatively flat. It is characterized by a trough in the bottom profile produced by Sea Beam. It will be shown that this type of interference can be greatly reduced or eliminated through an adaptive filtering scheme, pending a minor modification of the Sea Beam data acquisition system. The noise-cancelling configuration of the adaptive least-squares lattice filter will be used to process simulated Sea Beam data obtained through REVGEN, a high-fidelity sonar system simulation program.
海波束旁瓣干扰消除
海波束多波束测深系统在世界各地的科考船上都有应用。虽然它在促进对深海海底的了解方面作出了巨大贡献,但在其轮廓输出中发现了几种可能被误认为是海底结构的测深人工制品。其中,“隧道”效应是由近镜面反射引起的旁瓣干扰引起的,在海底相对平坦时最为突出。它的特点是由海光束产生的底部轮廓槽。这将表明,这种类型的干扰可以大大减少或消除,通过自适应滤波方案,等待海波束数据采集系统的一个小的修改。自适应最小二乘晶格滤波器的降噪配置将用于处理通过高保真声纳系统仿真程序REVGEN获得的模拟海波束数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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