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Target Depth Estimation Using Hull Mounted Active Sonar

机译:使用船体安装式声纳的目标深度估计

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摘要

High false alarm rates are a problem in anti-submarine warfare in littoral waters using active broadband sonar. Automatic classification algorithms may help combat this problem by filtering out detections due to non-threatening targets. An important feature for classification purposes is knowledge of the target's depth. Using active sonar with vertical beamforming capabilities, the received signal from a target can be used to find an estimate of the target's depth given an initial guess of the target's horizontal distance from the ship, the bottom profile and the sound speed profile. The estimation is done by an optimization algorithm. The algorithm varies relevant parameters and models signals based on these parameters, comparing the modelled signals with the received signal until parameters providing an optimal fit are found. The modelling is based on using a ray tracing procedure to find eigenrays for a candidate target depth, finding vertical arrival angles and arrival times by use of these eigenrays, and synthesizing a signal based on the arrival angles and arrival times. The ray tracing procedure is done numerically using LYBIN, a platform developed by the Norwegian Defence Logistics Organization (NDLO). Three candidate objective functions for comparing recorded signals to modelled signals are presented. The validity of the eigenray finding procedure is confirmed, and results from testing the optimization procedure on synthetic data when applying the different objective functions are presented. The results show that the method produces target depth estimates which are suitable for classification purposes.
机译:高误报率是沿海水域使用有源宽带声纳的反潜战中的一个问题。自动分类算法可以通过滤除非威胁目标导致的检测结果来帮助解决此问题。用于分类目的的重要特征是对目标深度的了解。通过使用具有垂直波束成形功能的有源声纳,可以从目标接收的信号中找到目标深度的估计值,前提是对目标与船的水平距离,底部轮廓和声速轮廓进行了初步猜测。估计是通过优化算法完成的。该算法改变相关参数并基于这些参数对信号进行建模,将建模信号与接收信号进行比较,直到找到提供最佳拟合的参数为止。该建模基于以下条件:使用射线跟踪过程查找候选目标深度的特征射线,使用这些特征射线查找垂直到达角和到达时间,并根据到达角和到达时间合成信号。使用LYBIN(挪威国防后勤组织(NDLO)开发的平台)以数字方式进行射线跟踪过程。提出了三个候选目标函数,用于将记录的信号与建模的信号进行比较。证实了特征射线查找程序的有效性,并给出了在应用不同目标函数时对合成数据进行优化程序测试的结果。结果表明,该方法产生了适合分类目的的目标深度估计。

著录项

  • 作者

    Ringholm Torbjørn;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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