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A three dimensional coherent doppler velocity profiler: bistatic beam geometry and calibration results

机译:三维相干多普勒速度分析器:双梁几何和校准结果

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We report on a 1.7 MHz coherent Doppler sonar system designed for nearshore environments that provides three dimensional velocity profiles over a≈0.5m depth range. The use of a bistatic geometry allows three independent components of velocity tobe measured simultaneously in time and coincident in space. The system was calibrated in a tow-tank facility for velocities up to 2m/s. For multiple pulse-pair ensemble-averaged velocity estimates generated at a rate of 30 profiles/second in 0.7 cm depthbins, vertical velocity accuracies of order 1 cm/s are achieved. For the horizontal components (based on bistatic measurements) standard deviation in velocity estimates of about 5% are realized with absolute accuracies of a similar magnitude. Accuratevelocities from the bistatic configuration are critically dependent on transducer beam geometries. We outline our approach for determining the exact sample volume for the acoustic system.
机译:我们报告了1.7 MHz连贯多普勒声纳系统,专为近岸环境提供了三维环境,提供了3个尺寸速度曲线≈0.5M深度范围。使用双体几何形状允许在时间和在空间中同时测量的三个独立的速度分量并在空间中重合。该系统被校准在拖车设施中,用于高达2M / s的速度。对于以30厘米/秒的距离/秒的速率产生的多个脉冲对整体平均速度估计,实现了1cm / s的垂直速度精度。对于水平组分(基于双面测量),以相似幅度的绝对精度实现约5%的标准偏差。来自双体配置的精确度尺寸依赖于换能器梁几何形状。我们概述了我们确定声学系统的精确样本量的方法。

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