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首页> 外文期刊>Journal of Geodesy >Analysis of decade-long time series of GPS-based polar motion estimates at 15-min temporal resolution
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Analysis of decade-long time series of GPS-based polar motion estimates at 15-min temporal resolution

机译:在15分钟的时间分辨率下基于GPS的极运动估计的长达十年的时间序列分析

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We present results from the generation of 10-year-long continuous time series of the Earth's polar motion at 15-min temporal resolution using Global Positioning System ground data. From our results, we infer an overall noise level in our high-rate polar motion time series of 60 (RMS). However, a spectral decomposition of our estimates indicates a noise floor of 4 at periods shorter than 2 days, which enables recovery of diurnal and semidiurnal tidally induced polar motion. We deliberately place no constraints on retrograde diurnal polar motion despite its inherent ambiguity with long-period nutation. With this approach, we are able to resolve damped manifestations of the effects of the diurnal ocean tides on retrograde polar motion. As such, our approach is at least capable of discriminating between a historical background nutation model that excludes the effects of the diurnal ocean tides and modern models that include those effects. To assess the quality of our polar motion solution outside of the retrograde diurnal frequency band, we focus on its capability to recover tidally driven and non-tidal variations manifesting at the ultra-rapid (intra-daily) and rapid (characterized by periods ranging from 2 to 20 days) periods. We find that our best estimates of diurnal and semidiurnal tidally induced polar motion result from an approach that adopts, at the observation level, a reasonable background model of these effects. We also demonstrate that our high-rate polar motion estimates yield similar results to daily-resolved polar motion estimates, and therefore do not compromise the ability to resolve polar motion at periods of 2-20 days.
机译:我们介绍了使用全球定位系统地面数据以15分钟的时间分辨率生成地球极性运动长达10年的连续时间序列的结果。根据我们的结果,我们推断出高速率极移时间序列为60(RMS)时的总体噪声水平。但是,我们估计的频谱分解表明,在短于2天的时间段内本底噪声为4,这使得昼夜和半昼夜潮汐引起的极地运动得以恢复。我们故意对逆行的昼间极地运动不加任何限制,尽管其固有的含糊不清和长期的章动。通过这种方法,我们能够解决洋潮对逆行极运动影响的衰减表现。因此,我们的方法至少能够区分排除昼夜潮汐影响的历史背景章动模型和包含这些影响的现代模型。为了评估逆行昼夜频带之外的极地运动解决方案的质量,我们集中于其恢复潮汐驱动和非潮汐变化的能力,这些变化以超快(每日)和快速(以以下时间段为特征)显示2至20天)。我们发现,对潮汐引起的昼夜和半日潮汐运动的最佳估计是在观测水平上采用合理的这些影响的背景模型得出的。我们还证明,我们的极地极地运动估算值产生的结果与每日解析的极地运动估算值相似,因此不会影响2-20天期间解决极地运动的能力。

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