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Toward improved sea ice freeboard observation with SAR altimetry using the physical retracker SAMOSA+

机译:通过使用物理包裹萨摩萨+改善SAR Altimetry改进的海冰流动观察

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摘要

Since 2010, the CryoSat-2 satellite mission has enabled to largely improve sea ice freeboard estimations. But due to the complexity of radar echoes over sea ice, freeboard retrieval from altimetry still presents some errors and biases that further limit the potential of these observations for climate studies or for assimilation into models. Various methods have been explored, producing a large range of freeboard estimations. In this study, we analyze the main steps of the radar freeboard computation developed as part of the Cryo-SeaNice Project. The objective is to quantify the impacts of each processing method and to identify optimal strategies to improve freeboard estimations from SAR altimetry measurements. We consider two SAR processing options: the Hamming Window (HW) and with the Zero-Padding (ZP), and 2 retrackers: the Threshold First Maximum Retracker Algorithm (TFMRA) based on heuristic measurements and SAMOSA+ a retracker declined from model based analysis of the surface back-scatter. Four freeboard solutions are generated from combinations of the 2 processing options (HW and ZP or ZP only) and the 2 types of retrackers. In addition, an alternative to the Hamming Window method to filter out side-lobes errors is presented. The impacts of the different approaches to estimate freeboard are quantified from comparisons with Operation Ice Bridge (OIB) and the Beaufort Gyre Exploration project (BGEP) in situ data. Our results show that SAMOSA+ provides more precise freeboard estimations. This new time-series is available on CTOH website. We also identified some impacts of the Hamming Window for both retrackers. Finally, we present the potential of using the simpler threshold retracker but with a correction to account for the surface roughness that is calibrated against SAMOSA+.
机译:自2010年以来,低温卫星卫星特派团已启用大部分改善海冰流速估计。但由于雷达回声在海冰上的复杂性,从高度测量的干舷检索仍然存在一些误差和偏差,进一步限制了这些观察到气候研究的潜力或用于分化到模型中的同化。已经探索了各种方法,产生了大量的空间估计。在这项研究中,我们分析了作为Cryo-Seanice项目的一部分开发的雷达加勒布计算的主要步骤。目的是量化每种加工方法的影响,并识别最佳策略,以改善SAR高度测量测量的空间估计。我们考虑两个SAR处理选项:汉明窗口(HW)和零填充(ZP)和2个运载:基于启发式测量的阈值第一最大寄入算法(TFMRA)和Samosa +一retracker从基于模型分析下降表面背部散射。从2个处理选项(仅限HW和ZP或ZP)的组合和2种类型的运载产生了四种干舷解决方案。另外,呈现了汉明窗法的替代方法,以滤除侧瓣误差。不同方法估计收益率的影响是通过与运行冰桥(OIB)的比较量化和Beaufort Gyre Explorial项目(BGGEP)的比较量化。我们的结果表明,Samosa +提供了更精确的干舷估计。在CTOH网站上提供了新的时间系列。我们还确定了汉明窗对两种习惯的影响。最后,我们介绍了使用更简单的阈值预防器的潜力,但是用校正来判断校准针对Samosa +的表面粗糙度。

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  • 来源
    《Advances in space research》 |2021年第2期|732-745|共14页
  • 作者单位

    Laboratoire d'Etude en Geophysique et Oceanographie Spatiales Centre National de la Recherche Scientifique (LEGOS CNRS UMR5566) Universite de Toulouse 31400 France;

    Laboratoire d'Etude en Geophysique et Oceanographie Spatiales Centre National de la Recherche Scientifique (LEGOS CNRS UMR5566) Universite de Toulouse 31400 France;

    HeSpace Robert Bosch Strasse 7 64293 Darmstadt Germany;

    Laboratoire d'Etude en Geophysique et Oceanographie Spatiales Centre National de la Recherche Scientifique (LEGOS CNRS UMR5566) Universite de Toulouse 31400 France;

    Laboratoire d'Etude en Geophysique et Oceanographie Spatiales Centre National de la Recherche Scientifique (LEGOS CNRS UMR5566) Universite de Toulouse 31400 France;

    European Space Agency (ESA/ESRIN) 00044 Frascati Italy;

    European Space Agency (ESA/ESRIN) 00044 Frascati Italy;

    Laboratoire d'Etude en Geophysique et Oceanographie Spatiales Centre National de la Recherche Scientifique (LEGOS CNRS UMR5566) Universite de Toulouse 31400 France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sea ice freeboard; Remote sensing; Arctic; Delay-Doppler Altimetry; SAMOSA+; TFMRA; Hamming; Zero-padding;

    机译:海冰干舷;遥感;北极;延迟多普勒高度偏移;Samosa +;TFMRA;汉明;零填充;

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