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Validation of Sentinel-3A/3B Satellite Altimetry Wave Heights with Buoy and Jason-3 Data

机译:使用浮标和Jason-3数据验证Sentinel-3A / 3B卫星测高仪的波高

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摘要

The validation of significant wave height (SWH) data measured by the Sentinel-3A/3B SAR Altimeter (SRAL) is essential for the application of the data in ocean wave monitoring, forecasting and wave climate studies. Sentinel-3A/3B SWH data are validated by comparisons with U. S. National Data Buoy Center (NDBC) buoys, using a spatial scale of 25 km and a temporal scale of 30 min, and with Jason-3 data at their crossovers, using a time difference of less than 30 min. The comparisons with NDBC buoy data show that the root-mean-square error (RMSE) of Sentinel-3A SWH is 0.30 m, and that of Sentinel-3B is no more than 0.31 m. The pseudo-Low-Resolution Mode (PLRM) SWH is slightly better than that of the Synthetic Aperture Radar (SAR) mode. The statistical analysis of Sentinel-3A/3B SWH in the bin of 0.5 m wave height shows that the accuracy of Sentinel-3A/3B SWH data decreases with increasing wave height. The analysis of the monthly biases and RMSEs of Sentinel-3A SWH shows that Sentinel-3A SWH are stable and have a slight upward trend with time. The comparisons with Jason-3 data show that SWH of Sentinel-3A and Jason-3 are consistent in the global ocean. Finally, the piecewise calibration functions are given for the calibration of Sentinel-3A/3B SWH. The results of the study show that Sentinel-3A/3B SWH data have high accuracy and remain stable.
机译:Sentinel-3A / 3B SAR高度计(SRAL)测得的重要波高(SWH)数据的验证对于将数据应用在海浪监测,预报和波浪气候研究中至关重要。 Sentinel-3A / 3B SWH数据通过与美国国家数据浮标中心(NDBC)浮标进行比较,使用的空间标度为25 km,时间标度为30分钟,而Jason-3数据在其交叉处使用时间进行比较相差不到30分钟。与NDBC浮标数据的比较表明,Sentinel-3A SWH的均方根误差(RMSE)为0.30 m,而Sentinel-3B的均方根误差不超过0.31 m。伪低分辨率模式(PLRM)SWH略优于合成孔径雷达(SAR)模式。 Sentinel-3A / 3B SWH在波高0.5 m的区间内的统计分析表明,Sentinel-3A / 3B SWH数据的准确性随波高的增加而降低。对Sentinel-3A SWH的每月偏差和RMSE的分析表明,Sentinel-3A SWH稳定且随时间略有上升趋势。与Jason-3数据的比较表明,Sentinel-3A和Jason-3的SWH在全球海洋中是一致的。最后,给出了用于Sentinel-3A / 3B SWH的分段校准功能。研究结果表明,Sentinel-3A / 3B SWH数据具有较高的准确性并保持稳定。

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