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WaveQ3D: Fast and accurate acoustic transmission loss (TL) eigenrays, in littoral environments.

机译:WaveQ3D:在沿海环境中,快速准确的声传输损耗(TL)本征射线。

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摘要

This study defines a new 3D Gaussian ray bundling acoustic transmission loss model in geodetic coordinates: latitude, longitude, and altitude. This approach is designed to lower the computation burden of computing accurate environmental effects in sonar training application by eliminating the need to transform the ocean environment into a collection of Nx2D Cartesian radials. This approach also improves model accuracy by incorporating real world 3D effects, like horizontal refraction, into the model. This study starts with derivations for a 3D variant of Gaussian ray bundles in this coordinate system. To verify the accuracy of this approach, acoustic propagation predictions of transmission loss, time of arrival, and propagation direction are compared to analytic solutions and other models. To validate the model's ability to predict real world phenomena, predictions of transmission loss and propagation direction are compared to at-sea measurements, in an environment where strong horizontal refraction effect have been observed. This model has been integrated into U.S. Navy active sonar training system applications, where testing has demonstrated its ability to improve transmission loss calculation speed without sacrificing accuracy.
机译:这项研究在大地坐标:纬度,经度和海拔高度中定义了一个新的3D高斯射线束声传输损耗模型。通过消除将海洋环境转换为Nx2D笛卡尔半径集合的需要,该方法旨在减轻在声纳训练应用中计算准确的环境影响的计算负担。这种方法还通过将真实世界的3D效果(例如水平折射)合并到模型中来提高模型的准确性。这项研究从在该坐标系中高斯射线束的3D变体开始。为了验证此方法的准确性,将传播损耗,到达时间和传播方向的声学传播预测与解析解和其他模型进行了比较。为了验证模型预测现实现象的能力,在观察到强烈水平折射效应的环境中,将传输损耗和传播方向的预测与海上测量进行了比较。该模型已集成到美国海军有源声纳训练系统应用程序中,在测试中证明了其能够在不牺牲精度的情况下提高传输损耗计算速度的能力。

著录项

  • 作者

    Reilly, Sean M.;

  • 作者单位

    University of Rhode Island.;

  • 授予单位 University of Rhode Island.;
  • 学科 Acoustics.;Ocean engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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