首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >NUMERICAL SIMULATION AND EXPERIMENTAL VALIDATION OF WAVE PATTERN INDUCED COORDINATE ERRORS IN AIRBORNE LIDAR BATHYMETRY
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NUMERICAL SIMULATION AND EXPERIMENTAL VALIDATION OF WAVE PATTERN INDUCED COORDINATE ERRORS IN AIRBORNE LIDAR BATHYMETRY

机译:机载激光雷达波模型引起的坐标误差的数值模拟和实验验证

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Airborne LiDAR bathymetry (ALB) requires a refraction correction on the basis of Snell’s law at the air-water interface and a speedof- light correction to be applied on the raw laser data in order to achieve a geometric accurate representation of the water bottom. Strictly speaking, this requires exact knowledge about the local water surface inclination. If this information is not available, certain simplifications have to be introduced in correction methods. Common correction methods assume either a horizontal or a locally tilted planar water surface as well as an infinitesimally small thin laser ray, thus neglecting effects caused by the finite laser pulse diameter penetrating a curved surface. In our simulation approach, the refraction of finite diameter laser pulses passing the air/water interface is modeled differentially in a strict manner. The simulation tool is able to predict wave induced coordinate errors which have to be expected due to the neglections made in common refraction correction methods. Moreover, wave pattern dependent correction terms were be derived from systematic portions of the errors revealed by the simulations. The goal of this paper is to experimentally validate the coordinate errors predicted by the simulation tool. For that purpose, airborne laser bathymetry data of a 12 by 50 meter open air wave pool were processed, and the results were compared to reference data of the empty pool acquired by terrestrial laser scanning. The comparison showed that the effects predicted in the numerical simulation are confirmed by the experimental validation.
机译:机载LiDAR水深测量(ALB)需要根据斯涅尔定律在气-水界面进行折射校正,并对原始激光数据应用光速校正,以实现水底的几何精确表示。严格来说,这需要有关局部水面倾斜的确切知识。如果此信息不可用,则必须在校正方法中进行某些简化。常见的校正方法假定水平或局部倾斜的平面水表面以及无限细小的细激光束,因此忽略了由有限的激光脉冲直径穿透曲面引起的影响。在我们的仿真方法中,严格限制了通过空气/水界面的有限直径激光脉冲的折射。该模拟工具能够预测由于普通折射校正方法中的疏忽而必须预期的波感应坐标误差。此外,波动模式相关的校正项是从模拟显示的误差的系统部分中得出的。本文的目的是通过实验验证仿真工具预测的坐标误差。为此,处理了一个12 x 50米的露天波池的机载激光测深数据,并将结果与​​通过地面激光扫描获取的空池的参考数据进行比较。比较表明,数值模拟中预测的效果已通过实验验证得到证实。

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