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Estimates of Minor Ocean Tide Loading Displacement and Its Impact on Continuous GPS Coordinate Time Series

机译:小潮汐载荷位移的估计及其对连续GPS坐标时间序列的影响

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The site displacement due to ocean tidal loading is regarded as one of the largest uncertainties in precise geodetic positioning measurements, among which the effect of minor ocean tides (MOT), except for the 11 main tidal constituents, are sometimes neglected in routine precise global positioning system (GPS) data processing. We find that MOT can cause large vertical loading displacements with peak-to-peak variations reaching more than 8 mm at coastal/island stations. The impact of MOT on the 24-hour GPS solution is slightly larger than the magnitude of MOT loading itself, with peak-to-peak displacement variation at about 10 mm for the horizontal and 30 mm for the vertical components. We also find that the vertical velocity of all the selected stations in the Southwest Pacific was reduced by more than 10% after considering the MOT effect, while stations with weighted root mean square reduced data account for 62%, 59%, and 36% for the up, east, and north components respectively, in particular for most coastal/island stations. Furthermore, MOT correction could significantly reduce the annual signal of the global stacked east component, the near fortnightly and the long-term periodic signals in the up component. The power of some anomalous harmonics of 1.04 cycle per year is also decreased to some extent. These results further proved the benefits of MOT correction in precise GPS data processing.
机译:在精确的大地测量中,由于潮汐载荷引起的场地位移被认为是最大的不确定性之一,在常规的精确全球定位中,除11个主要潮汐成分外,次要海潮(MOT)的影响有时被忽略系统(GPS)数据处理。我们发现,MOT会引起较大的垂直载荷位移,在沿海/岛站,峰峰值变化超过8 mm。 MOT对24小时GPS解决方案的影响略大于MOT加载本身的大小,水平方向的峰峰值位移变化约为10 mm,垂直方向的峰距位移约为30 mm。我们还发现,在考虑了MOT效应后,西南太平洋所有选定站点的垂直速度降低了10%以上,而加权均方根减少了数据的站点分别占62%,59%和36%分别是上,东和北部分,尤其是对于大多数沿海/岛屿站点。此外,MOT校正可以显着减少全球叠加东部分量的年信号,上升分量中的近两周和长期周期信号。每年1.04个周期的某些异常谐波的功率也有所降低。这些结果进一步证明了MOT校正在精确GPS数据处理中的好处。

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