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Ranging of Turbulent Water Surfaces Using a Laser Triangulation Principle in a Laboratory Environment

机译:在实验室环境中使用激光三角测量原理测距湍流水面

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摘要

A measuring system based on laser triangulation for ranging a turbulent water surface in a laboratory environment is presented in this paper. The system is composed of a light detection and ranging (LIDAR) device, serving as a light source, and a high-speed camera. Single-point illumination was chosen to facilitate the introduction of the epipolar line in the image-processing step and thus improve the distinction between primary and other reflections, which increase the uncertainty of the measurement and introduce noise. The system was used to measure the water surface in an open channel confluence, which is composed of main and tributary channels, which join at a 90 degrees angle. The surface was measured for 2.01 s, resulting in 54,682 points measured in 543 profiles. The influence of image process parameters (height and width of filtering kernel and width of area surrounding the epipolar line) on smooth and rough water surface was studied. The results show that the parameters' influence is at least an order of magnitude smaller than the amplitude of water surface fluctuation.
机译:本文介绍了一种基于激光三角测量的测量系统,用于测距实验室环境中的湍流水表面。该系统由用作光源和高速相机的光检测和测距(LIDAR)器件组成。选择单点照明以促进在图像处理步骤中引入末端线,从而改善初级和其他反射之间的区别,这增加了测量的不确定性并引入噪音。该系统用于测量开放通道汇合中的水表面,该汇合由主要和支流通道组成,该通道以90度连接。测量表面为2.01秒,导致543型曲线测量的54,682点。研究了图像工艺参数(滤波核的高度和宽度和围绕骨头线宽度的宽度)的影响,呈粗糙水表面。结果表明,参数的影响是小于水表面波动的幅度的数量级。

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