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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Land ice height-retrieval algorithm for NASA's ICESat-2 photon-counting laser altimeter
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Land ice height-retrieval algorithm for NASA's ICESat-2 photon-counting laser altimeter

机译:NASA的ICE ICESAT-2光子计数激光高度计的陆冰高度检索算法

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摘要

The Ice, Cloud, and land Elevation Satellite-2 (ICESat-2) and its sole scientific instrument, the Advanced Topographic Laser Altimeter System (ATLAS), was launched on 15 September 2018 with a primary goal of measuring changes in the surface of the Earth's land ice (glaciers and ice sheets). ATLAS is a photon-counting laser altimeter, which records the transit time of individual photons in order to reconstruct surface height along track. The ground-track pattern repeats every 91 days such that changes in ice sheet surface height can be estimated through time. In this paper, we describe the set of algorithms that have been developed for ICESat-2 to retrieve ice sheet surface height from the geolocated photons for the Land Ice Along-Track Height Product (ATL06), and demonstrate their output and performance using a synthetic dataset over various land-ice surfaces and under different cloud conditions. We show that the ATL06 algorithm is expected to perform at the level required to meet the ICESat-2 science objectives for land ice.
机译:冰,云和陆地海拔卫星-2(ICESAT-2)及其唯一科学仪器,先进的地形激光高度计系统(ATLAS)于2018年9月15日推出,主要是测量表面变化的主要目标地球的陆地冰(冰川和冰盖)。 Atlas是一个光子计数激光高度计,其记录单个光子的传输时间,以便沿着轨道重建表面高度。地面轨道图案每91天重复一次,使得可以通过时间估计冰盖表面高度的变化。在本文中,我们描述了已经为ICSAT-2开发的一组算法,以从轨道高度产品(ATL06)的陆地冰的地理冰片中检索冰盖表面高度,并使用合成证明它们的输出和性能在各种陆地冰表面和不同云条件下的数据集。我们表明,预计ATL06算法将在满足陆冰冰的ICESAT-2科学目标所需的水平上进行。

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