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Ocean tide loading displacements in western Europe: 1. Validation of kinematic GPS estimates

机译:西欧的海潮荷载位移:1.运动学GPS估计的验证

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GPS has been extensively used to estimate tidal ground displacements, but the accuracy of this has not been systematically verified. Using more than 20 sites distributed across western Europe, we show that postprocessed kinematic precise point positioning GPS with appropriately tuned process noise constraints is capable of recovering synthetic tidal displacements inserted into real data, with a typical accuracy of 0.2mm depending on the time series noise. The kinematic method does not result in erroneous propagation of signals from one coordinate component to another or to the simultaneously estimated tropospheric delay parameters. It is robust to the likely effects of day-to-day equipment and reference frame changes, and to outages in the data. A minimum data span of 4years with at least 70% availability is recommended. Finally, we show that the method of reducing apparent coordinate time series noise by constraining the tropospheric delay to values previously estimated in static batch GPS analysis, in fact, results in the suppression of true tidal signals. Using our kinematic GPS analysis approach, periodic displacements can be reliably observed at the 0.2mm level, which is suitable for the testing and refinement of ocean tide and solid Earth response models.
机译:GPS已被广泛用于估算潮汐地面的位移,但是其准确性尚未得到系统验证。利用分布在西欧的20多个站点,我们证明了经过适当调整的过程噪声约束的后处理运动学精确点定位GPS能够恢复插入真实数据中的合成潮汐位移,其典型精度为0.2mm(取决于时间序列噪声) 。运动学方法不会导致信号从一个坐标分量错误地传播到另一坐标分量或同时估计的对流层延迟参数。它对于日常设备和参考框架更改的可能影响以及数据中断都非常可靠。建议最小数据跨度为4年,可用性至少为70%。最后,我们证明了通过将对流层延迟限制为静态批次GPS分析中先前估计的值来减少视在坐标时间序列噪声的方法,实际上可以抑制真实的潮汐信号。使用我们的运动学GPS分析方法,可以在0.2mm的水平上可靠地观察到周期性位移,这适用于测试和完善海潮和固体地球响应模型。

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