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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Airborne Laser Scanning for calibration and validation of inshore satellite altimetry: A proof of concept
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Airborne Laser Scanning for calibration and validation of inshore satellite altimetry: A proof of concept

机译:空中激光扫描,用于校准和验证近海卫星Altimetry:概念证明

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摘要

Recent developments in satellite altimetry are leading to improved spatial resolution, allowing applications in the coastal zone and over inland waters. Validation of these sensors near the shore remains a challenge, since the process of upscaling from single point measurements (gauges or GPS buoys) to the radar altimetry footprint is a source of uncertainty. Meanwhile, Airborne Laser Scanning (LIDAR) has been proven capable of delivering accurate water surface heights rapidly over large areas. Here, we show a proof of concept by comparing airborne LIDAR heights over Lake Balaton, Hungary with near-concurrent Envisat and Jason-2 altimeter heights and water level gauge data. The accuracy of LIDAR heights was improved by strip adjustment and absolute georeferencing to ground control points; waveform retracking improved the accuracy of altimetry data. LIDAR heights were averaged within the outlines of the altimetry footprints. Bias is measured for LIDAR and altimetry with respect to gauge heights, and standard deviation of heights measures the vertical dispersion of footprints within one track. Results show standard deviation of heights is in the order of millimeters for LIDAR and 40-50cm for altimetry and bias with respect to gauge heights is 5cm for LIDAR compared to 40cm for altimetry. We conclude that LIDAR may be used for calibration and validation of high resolution satellite radar altimetry over inland waters. (C) 2017 Published by Elsevier Inc.
机译:卫星Altimetry的最新发展是提高空间分辨率,允许在沿海地区和内陆水域的应用。靠近岸边的这些传感器的验证仍然是一个挑战,因为从单点测量(仪表或GPS浮标)上升到雷达高度占地面积的过程是一种不确定性的源泉。同时,已经证明了空气载荷(LIDAR)能够在大区域迅速提供准确的水表面高度。在这里,我们通过比较Balaton湖,匈牙利与近乎同时的Envisat和Jason-2高度高度和水位仪表数据来展示概念证明。通过条带调节和绝对地理移植到地面控制点的延长队高度的准确性得到改善;波形回归提高了高度数据的准确性。 LIDAR高度在高度偏移量占地面积的轮廓内平均。针对测量高度的LIDAR和高度测量测量偏压,并且高度的标准偏差测量脚印在一个轨道内的垂直分散。结果显示高度的标准偏差为LIDAR的毫米,用于高度测量高度的40-50cm,而LIDAR的偏差为5厘米,相比高度偏移40厘米。我们得出结论,激光雷达可用于校准和验证内陆水域的高分辨率卫星雷达Altimetry。 (c)2017年由elsevier公司发布

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