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Data-based differential matched-mode source depth estimation for a moving source

机译:运动源的基于数据的差分匹配模式源深度估计

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摘要

For locating a target moving in a more general track relative to the single receiver and at an ultra-low frequency (<100 Hz) effectively, a differential matched-mode method is proposed to estimate the depth of a moving source. It relies on the Hankel transform fast Fourier transform (FFT) to estimate the modal wavenumber difference spectrum for extracting source depth information. For the real data, the received signal as a function of the range is first processed by FFT per block to obtain the pressure field per range. Then these pressure fields are steered and beamformed according to the synthetic aperture created by the source motion to yield the modal wavenumber difference spectrum. A normalised source-depth ambiguity function configured using these spectral peaks is applied to estimate the source depth with knowledge of the mode depth functions or nominal modal functions. Numerical simulation and experimental data all have tested this method with reasonable success especially when the source travels in a non-radial direction relative to the single receiver.
机译:为了将目标相对于单个接收器有效地定位在更通用的轨道中并有效地以超低频(<100 Hz)定位,提出了一种差分匹配模式方法来估计移动源的深度。它依靠Hankel变换快速傅立叶变换(FFT)估计模态波数差谱,以提取源深度信息。对于实际数据,首先通过每个块的FFT对作为范围函数的接收信号进行处理,以获得每个范围的压力场。然后根据源运动产生的合成孔径对这些压力场进行控制和波束成形,以产生模态波数差谱。应用使用这些频谱峰值配置的归一化源深度模糊度函数,以借助模式深度函数或标称模式函数的知识来估算源深度。数值模拟和实验数据都以合理的成功测试了该方法,特别是当源相对于单个接收器沿非径向方向传播时。

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