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Measuring surface ocean wave height and directional spectra using an Acoustic Doppler Current Profiler from an autonomous underwater vehicle

机译:使用来自自主水下航行器的声学多普勒流速剖面仪测量表面海浪高度和方向谱

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摘要

The Acoustic Doppler Current Profiler (ADCP) is a proven technology which is capable of measuring surface wave height and directional information, however it is generally limited to rigid, bottom mounted applications which limit its capabilities for measuring deep water waves. By employing an upward looking ADCP on a moving platform, such as an autonomous underwater vehicle or submerged float, we show that it is possible to remove the wave induced motion of the platform and accurately measure surface ocean wave information. The platform selected for testing was a REMUS-100 vehicle equipped with an upward and downward looking ADCP and high accuracy Kearfott inertial navigation unit. Additionally, a Microstrain 3DM-GX3-25 Attitude Heading Reference System was tested as a low cost alternative to the Kearfott system. An experiment consisting of multiple REMUS deployments was conducted near the Martha's Vineyard Coastal Observatory (MVCO). The wave induced motion was measured by various inertial and acoustic sensors and removed from the ADCP data record. The surface wave height and mean directional estimates were compared against a Datawell MKIII directional Waverider buoy and bottom mounted 1200 kHz upward looking ADCP at the MVCO. Results demonstrate that the non-directional spectrum of wave height and the mean wave direction as a function of frequency can be accurately measured from an underway autonomous underwater vehicle in coastal depth waters using an ADCP.
机译:声学多普勒电流剖面仪(ADCP)是一种成熟的技术,能够测量表面波的高度和方向信息,但是通常仅限于刚性,底部安装的应用,这限制了其测量深水波的能力。通过在移动平台(例如,自主水下航行器或潜水浮标)上采用向上看的ADCP,我们表明可以消除波浪引起的平台运动并准确测量地表海浪信息。选择进行测试的平台是REMUS-100车辆,该车辆配备了向上和向下看的ADCP和高精度的Kearfott惯性导航装置。此外,还测试了Microstrain 3DM-GX3-25航向参考系统,作为Kearfott系统的低成本替代产品。在玛莎葡萄园海岸天文台(MVCO)附近进行了由多个REMUS部署组成的实验。由各种惯性传感器和声学传感器测量了波引起的运动,并将其从ADCP数据记录中删除。将表面波高和平均方向估计值与Datawell MKIII定向Waverider浮标和底部安装的1200 kHz向上看的MVCO ADCP进行了比较。结果表明,使用ADCP可以从沿海水下航行中的水下航行器中准确测量波高和平均波向与频率的函数关系。

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  • 作者

    Haven Scott;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 eng
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