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Refraction Correction of Airborne LiDAR Bathymetry Based on Sea Surface Profile and Ray Tracing

机译:基于海面轮廓和射线追踪的机载LiDAR测深仪的折射校正

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摘要

Water depth can be measured using airborne LiDAR bathymetry (ALB). However, when the green laser beam passes through the air-water interface, the sea surface slope greatly affects the laser propagation path, significantly influencing the accuracy of the measured seafloor topography. To reduce its influence, a refraction correction method at the air-water interface based on the sea surface profile and ray tracing is proposed. First, the 3-D sea surface profile is fit based on the least-squares criteria and the wave spectrum, using the laser point data reflected by the sea surface. Then, on the basis of the sea surface slope, the geolocation biases of the laser points are corrected by tracing every laser transmission path at the air-water interface. The developed method is used to correct the ALB data collected in the South China Sea, and verified by the topography data captured by a ship-borne multibeam echo sounder. Before the refraction correction, the mean absolute error (MAE) is 14.2 cm, and the root-mean-square error (RMSE) is 17.5 cm. After the refraction correction, the MAE and RMSE decrease to 7.2 and 8.3 cm, respectively. The developed method can effectively improve the bathymetric accuracy of the ALB data.
机译:可以使用机载LiDAR水深法(ALB)测量水深。但是,当绿色激光束穿过空气-水界面时,海面倾斜会极大地影响激光传播路径,从而显着影响所测海底地形的准确性。为了减小其影响,提出了一种基于海面剖面和射线追踪的气水界面折射校正方法。首先,使用最小二乘准则和波谱,使用海面反射的激光点数据拟合3-D海面轮廓。然后,基于海面倾斜度,通过在空气-水界面处跟踪每个激光传输路径来校正激光点的地理位置偏差。所开发的方法用于校正在南中国海收集的ALB数据,并通过船载多波束回声测深仪捕获的地形数据进行验证。屈光矫正之前,平均绝对误差(MAE)为14.2厘米,均方根误差(RMSE)为17.5厘米。折射校正后,MAE和RMSE分别减小到7.2和8.3 cm。所开发的方法可以有效地提高ALB数据的测深精度。

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