首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Analysis of Sentinel-3 SAR altimetry waveform retracking algorithms for deriving temporally consistent water levels over ice-covered lakes
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Analysis of Sentinel-3 SAR altimetry waveform retracking algorithms for deriving temporally consistent water levels over ice-covered lakes

机译:Sentinel-3 SAR Altimetry波形Retracking算法分析,用于在冰盖湖泊中衍生出现时间一致的水位

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Satellite radar altimetry has been widely used in the monitoring of water levels of lakes, rivers and wetlands in the past decades. The conventional pulse-limited radar altimeters have a relatively large ground footprint, which limits their capability to retrieve surface elevation information over small and medium-sized water bodies. A new generation of satellite radar altimeter system, a dual-frequency SAR radar altimeter (SRAL) onboard the Copernicus Sentinel-3 satellite, has produced densely sampled elevation measurements with a smaller footprint for the Earth's surfaces since June 2016, owing to the Delay-Doppler processing technique. Four standard SRAL SAR altimetry waveform retracking algorithms (known as retrackers) have been designed to retrieve elevation measurements for different types of surfaces: Ice-Sheet retracker for polar ice sheets, SAMOSA-3 retracker for open ocean and coastal zones, OCOG retracker for sea-ice margins, and Sea-Ice retracker for sea ice. In this research, we evaluated the performances of the Sentinel-3 SRAL SAR altimetry retrackers over lakes, particularly over seasonally ice-covered lakes in one hydrological cycle. For 15 lakes and reservoirs with different sizes and at varying latitudes in the northern hemisphere, we compared the lake water levels estimated by each of standard SRAL SAR retrackers against in-situ water level measurements for different seasons (a full hydrologic cycle) during 2016-2017. Our evaluation shows that Sea-Ice retracker was unable to provide continuous estimates of lake water levels, as a result of the high rate of missing data. Although the precision and relative accuracy of lake water level estimates from these three standard SRAL SAR retrackers are similar, the SAMOSA-3 retracker has the least bias in comparison with ground-based gauge measurements. When the lakes in the mid- and high-latitude regions were covered by ice in the winter season, these three standard SAR retrackers generated erroneous lake water level measurements, significantly lower than the true lake water levels recorded by in-situ gauge stations. The measurement errors of these three standard retrackers increase with the growth of the lake ice thickness. To address the negative effect of the seasonal ice cover, we developed a new bimodal correction algorithm. We demonstrate that our bimodal correction algorithm can retrieve the ice thickness and reliably estimate water levels for the ice-covered lakes in winter, hence enabling the generation of temporally consistent lake water level measurements throughout all seasons for lake hydrological analysis.
机译:卫星雷达Altimetry已广泛用于过去几十年来监测湖泊,河流和湿地的水平。传统的脉冲限制雷达高度计具有相对大的地基占地面积,其限制了它们在中小型水体上检索表面高度信息的能力。一代新一代卫星雷达高度计系统,双频SAR雷达高度计(SARL)在哥白尼Sentinel-3卫星上,由于延迟 - 由于延迟 - 多普勒加工技术。四个标准SAL SAR Altimetry波形Retracking算法(称为Hetrackers)被设计为检索不同类型的表面的高度测量:极地冰盖的冰手册,Samosa-3用于开放海洋和沿海地区的欧洲州海岸古董渡轮店-ice边缘和海冰的海冰习惯。在这项研究中,我们评估了Sentinel-3 SAR SAR Altimetry Hetrackers在湖泊上的表演,特别是在一种水文循环中在季节性冰盖湖泊上。对于具有不同尺寸和北半球不同纬度的湖泊和水库,我们将每个标准的SAR SAR Retrackers估计的湖水水平与2016年期间不同季节(全水文循环)的原位水位测量相比2017年。我们的评价表明,由于缺失数据的高速度,海冰运载无法提供湖水水平的连续估计。虽然来自这三个标准SAR SAR Hetrackers的湖水水位估计的精度和相对精度是相似的,但是Samosa-3 Hetracker与基于地面的仪表测量相比具有最小偏差。当中高纬度地区的湖泊被冬季被冰盖覆盖时,这三个标准的SAR Hetrackers产生了错误的湖水水位测量,显着低于原位计量站记录的真正湖水水平。这三种标准再包机的测量误差随着湖冰厚度的生长而增加。为了解决季节性冰盖的负面影响,我们开发了一种新的双峰校正算法。我们证明我们的双峰校正算法可以检索冬季冰盖湖泊的冰厚度和可靠地估计水平,从而使湖泊水文分析的所有季节产生时间上一致的湖水水平测量。

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