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Performance of the high-resolution atmospheric model HRRR-AK for correcting geodetic observations from spaceborne radars

机译:高分辨率大气模型HRRR-AK校正星载雷达的大地观测资料的性能

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摘要

[1] Atmospheric phase delays are considered to be one of the main performance limitations for high-quality satellite radar techniques, especially when applied to ground deformation monitoring. Numerical weather prediction (NWP) models are widely seen as a promising tool for the mitigation of atmospheric delays as they can provide knowledge of the atmospheric conditions at the time of Synthetic Aperture Radar data acquisition. However, a thorough statistical analysis of the performance of using NWP production in radar signal correction is missing to date. This study provides a quantitative analysis of the accuracy in using operational NWP products for signal delay correction in satellite radar geodetic remote sensing. The study focuses on the temperate, subarctic, and Arctic climate regions due to a prevalence of relevant geophysical signals in these areas. In this study, the operational High Resolution Rapid Refresh over the Alaska region (HRRR-AK) model is used and evaluated. Five test sites were selected over Alaska (AK), USA, covering a wide range of climatic regimes that are commonly encountered in high-latitude regions. The performance of the HRRR-AK NWP model for correcting absolute atmospheric range delays of radar signals is assessed by comparing to radiosonde observations. The average estimation accuracy for the one-way zenith total atmospheric delay from 24 h simulations was calculated to be better than ∼14 mm. This suggests that the HRRR-AK operational products are a good data source for spaceborne geodetic radar observations atmospheric delay correction, if the geophysical signal to be observed is larger than 20 mm.
机译:[1]大气相位延迟被认为是高质量卫星雷达技术的主要性能限制之一,尤其是在应用于地面变形监测时。数值天气预报(NWP)模型被广泛认为是缓解大气延迟的有前途的工具,因为它们可以提供合成孔径雷达数据采集时的大气状况知识。但是,到目前为止,尚缺乏对将NWP生产用于雷达信号校正的性能的全面统计分析。这项研究对使用可操作NWP产品进行卫星雷达大地遥感中信号延迟校正的准确性进行了定量分析。由于这些地区普遍存在相关的地球物理信号,因此研究重点放在温带,亚北极和北极气候区。在这项研究中,使用并评估了阿拉斯加地区的高分辨率高分辨率快速刷新(HRRR-AK)模型。在美国阿拉斯加(AK)上选择了五个测试地点,涵盖了高纬度地区通常遇到的多种气候条件。 HRRR-AK NWP模型用于校正雷达信号的绝对大气范围延迟的性能通过与无线电探空仪观测值进行比较来评估。从24小时模拟得出的单向天顶总大气延迟的平均估计精度经计算优于约14 mm。这表明,如果要观测的地球物理信号大于20 mm,则HRRR-AK操作产品是星载大地雷达观测大气延迟校正的良好数据源。

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