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ICESat Full-Waveform Altimetry Compared to Airborne Laser Scanning Altimetry Over The Netherlands

机译:ICESat全波形测高仪与荷兰机载激光扫描测高仪的比较

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摘要

Since 2003, the full-waveform laser altimetry system onboard NASA's Ice, Cloud and land Elevation Satellite (ICESat) has acquired a worldwide elevation database. ICESat data are widely applied for change detection of ice sheet mass balance, forest structure estimation, and digital terrain model generation of remote areas. ICESat's measurements will be continued by a follow-up mission. To fully assess the application possibilities of the full-waveform products of these missions, this research analyzes the vertical accuracy of ICESat products over complex terrain with respect to land cover type. For remote areas, validation of individual laser shots is often beyond reach. For a country with extensive geo-infrastructure such as The Netherlands, excellent countrywide validation is possible. Therefore, the ICESat full-waveform product GLA01 and the land elevation product GLA14 are compared to data from the Dutch airborne laser altimetry archive Actual Height model of the Netherlands (AHN). For a total population of 3172 waveforms, differences between ICESat- and AHN-derived terrain heights are determined. The average differences are below 25 cm over bare land and urban areas. Over forests, differences are even smaller but with slightly larger standard deviations of about 60 cm. Moreover, a waveform-based feature height comparison resulted in feature height differences of 1.89 m over forest, 1.48 m over urban areas, and 29 cm over low vegetation. These results, in combination with the presented processing chain and individual waveform examples, show that state-of-the-art ICESat waveform processing is able to analyze waveforms at the individual shot level, particularly outside urban areas.
机译:自2003年以来,NASA的冰,云和陆地高程卫星(ICESat)上的全波形激光测高系统已获得了全球高程数据库。 ICESat数据被广泛应用于冰盖质量平衡的变化检测,森林结构估计以及偏远地区的数字地形模型生成。后续任务将继续对ICESat进行测量。为了全面评估这些任务的全波形产品的应用可能性,本研究分析了ICESat产品在复杂地形上相对于土地覆盖类型的垂直精度。对于偏远地区,单个激光发射的验证通常无法实现。对于荷兰这样的地理基础设施广泛的国家,可以在全国范围内进行出色的验证。因此,将ICESat全波形乘积GLA01和陆地高程乘积GLA14与来自荷兰机载激光测高档案库的荷兰实际高度模型(AHN)的数据进行了比较。对于总共3172个波形,确定了ICESat和AHN派生的地形高度之间的差异。裸地和市区的平均差异在25厘米以下。在森林上,差异甚至更小,但标准偏差略大,约为60厘米。此外,基于波形的特征高度比较导致森林上的特征高度差为1.89 m,市区上的特征高度差为1.48 m,低植被下的特征高度差为29 cm。这些结果与所提供的处理链和单独的波形示例相结合,表明最新的ICESat波形处理能够分析单个镜头水平的波形,尤其是在市区外。

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