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Determining sea surface heights using small footprint airborne laser scanning

机译:使用小占地面积空气扫描确定海面高度

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Small footprint airborne laser scanning (ALS) is widely used to collect topographic data over large areas. ALS point clouds provide high resolution datasets for variety of scientific and engineering applications, e.g. geomorphology, geodynamics and forestry. ALS can also be used for monitoring coastal processes. For many marine applications, however, the sea surface heights (SSH) are often requested. Satellite altimetry (SA) has been used to monitor SSH globally. But in regional scale, especially in the coastal areas and enclosed water bodies, the usability of SA is limited due to poor accuracy. Alternatively, our experiments have demonstrated that the water surface in the nadir range can be registered using small footprint ALS. Therefore, a special case study was carried out to analyze SSH determination from ALS measurements. Three profile-wise ALS measurements were carried out in the eastern shores of the Baltic Sea. Along flight trajectories 100 m wide corridors of ALS points were formed. Shorter wavelength signals, like sea wave oscillation, were removed by a low-pass averaging filter. The achieved SSH were verified against a high resolution regional geoid model and also with high-frequency tide gauge observations. Comparisons revealed that the ALS-based sea level-corrected SSH agree with the regional geoid model with standard deviation as of ±1...±2 cm. Thus, small footprint ALS measurements could be applied to determine SSH in regions where SA has limited quality, e.g. in coastal areas and enclosed water bodies.
机译:小型脚印空气传播激光扫描(ALS)广泛用于收集大面积的地形数据。 ALS点云为各种科学和工程应用提供高分辨率数据集,例如,各种科学和工程应用。地貌,地球动力学与林业。 ALS还可用于监测沿海流程。然而,对于许多海洋应用,通常要求海面高度(SSH)。卫星Altimetry(SA)已被用来全球监控SSH。但在区域规模中,特别是在沿海地区和封闭的水体中,由于准确性差,SA的可用性有限。或者,我们的实验表明,NADIR范围中的水表面可以使用小型脚印ALS注册。因此,进行了一个特殊的案例研究以分析来自ALS测量的SSH测定。在波罗的海的东部海岸进行了三个外形智慧术。沿着飞行轨迹,形成了100米宽的ALS点走廊。通过低通平均滤波器除去较短的波长信号,如海波振荡。通过高分辨率区域大地区模型以及高频潮汐仪表观察,验证了所取得的SSH。比较透露,基于ALS的海平面纠正的SSH与标准差的区域大地区模型同意,标准偏差为±1 ...±2厘米。因此,可以应用小足迹ALS测量来确定SA质量有限的区域中的SSH。在沿海地区和封闭的水体。

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