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Vertical synthetic aperture sonar for ocean acoustic tomography

机译:用于海洋声层析成像的垂直合成孔径声纳

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This paper presents the result of a first attempt to achieve a vertical synthetic aperture in the ocean for SOFAR multipath identification. The experiment was conducted during the deployment of a tomographic array in the Mediterranean Sea. Drifting the hydrophone up or down from a ship while listening to the transmitted signal created a powerful synthetic aperture at 400 Hz. Wide-band phase-coded signals, typically used in ocean tomography, were found suitable for this application. The displacement length was 100 m and the hydrophone velocity 1 m/s. The obtained resolution of 1/spl deg/ enabled all the rays in the tested middle range configuration to be resolved and identified. Most of them could not have been resolved with a static hydrophone. Several Doppler processing methods are presented. The narrowband approximation leading to fast algorithms is discussed. Phase time series of individual paths obtained with an array-like wave separation method show that the phase coherence of the different multipaths is nearly perfect. An angle/velocity calibration method and a first rough inversion are finally presented.
机译:本文介绍了首次尝试在海洋中实现SOFAR多径识别的垂直合成孔径的结果。该实验是在地中海断层扫描阵列部署期间进行的。在聆听传输的信号时,将水听器从船上上下移动会在400 Hz时产生强大的合成孔径。已发现通常在海洋层析成像中使用的宽带相位编码信号适用于此应用。位移长度为100 m,水听器速度为1 m / s。所获得的分辨率为1 / spl deg /,可以分辨和识别测试中程配置中的所有光线。他们中的大多数无法通过静态水听器解决。介绍了几种多普勒处理方法。讨论了导致快速算法的窄带近似。用类似阵列的波分离方法获得的单个路径的相位时间序列表明,不同多路径的相位相干性几乎是完美的。最后提出了角度/速度校准方法和首次粗略反演。

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