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Measurements and modeling of the target strength of divers

机译:潜水员目标力量的测量和建模

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Acoustic methods (sonars) offer a potential tool for detecting and tracking of underwater swimmers. The main unknown in assessing the feasibility of using sonar to detect swimmers is their target strength. The target strength of diver with tanks, buoyancy control, wet or dry suit, etc. is a complicated function of aspect angle and frequency. The detection range for a diver will depend strongly on the target strength and very little data are available in the literature on this topic. This dearth of information limits the ability of sonar engineers to design a detection system. Our study addresses this issue both experimentally and theoretically. As part of this study target strength measurements made in the field were compared with theoretical models. Measurements are being conducted using Farsounder FS-3 phased array sonar with a center frequency of 60 kHz. Tests will be carried out in shallow water using a diver at different orientations, depths and ranges. Target strength modeling was performed using simple cylindrical models and more sophisticated techniques. Existing target strength models for finite cylindrical shapes derived by Gaunaurd (1985) were used as initial approximations. A relatively new technique for modeling acoustic scattering by axisymmetric finite-length bodies using a three-dimensional Fourier mapping method developed by Reeder and Stanton (2004) was compared to the data.
机译:声学方法(声纳)为检测和跟踪水下游泳者提供了一种潜在的工具。在评估使用声纳检测游泳者的可行性时,主要的未知数是他们的目标力量。带水箱,浮力控制,潜水服或潜水服等潜水员的目标强度是纵横角和频率的复杂函数。潜水员的检测范围将在很大程度上取决于目标强度,有关该主题的文献中仅有很少的数据。信息的匮乏限制了声纳工程师设计探测系统的能力。我们的研究在实验和理论上都解决了这个问题。作为这项研究的一部分,将在现场进行的目标强度测量结果与理论模型进行了比较。使用中心频率为60 kHz的Farsounder FS-3相控阵声纳进行测量。测试将在浅水中使用不同方向,深度和范围的潜水员进行。使用简单的圆柱模型和更复杂的技术进行目标强度建模。由Gaunaurd(1985)导出的有限圆柱形状的现有目标强度模型被用作初始近似值。将一种相对较新的技术与该数据进行比较,该技术使用Reeder和Stanton(2004)开发的三维傅里叶映射方法,通过轴对称有限长体的声散射建模。

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