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Improvement in PWV estimation from GPS due to the absolute calibration of antenna phase center variations

机译:通过对天线相位中心变化的绝对校准,改进了GPS的PWV估计

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Climatology of column-integrated atmospheric water vapor over Spain has been carried out by means of three techniques: soundings, sun photometers and GPS receivers. Comparing data from stations equipped with more than one of these instruments, we found that a large discontinuity occurred on November 6, 2006, in the differences between the data series from GPS receivers and those from the other two techniques. Prior to that date, the GPS data indicate a wet bias of 2-3 mm for all stations when compared with sounding or photometer data, whereas after that date this bias practically reduces to zero. The root mean square error also decreases about half of its value. On November 6, 2006, the International GNSS Service adopted an absolute calibration model for the antennas of the GPS satellites and receivers instead of the relative one. This change is expected to be an improvement, increasing the accuracy of station position determination and consequently benefiting post-processing products such as zenith total delay from which the atmospheric water vapor content is calculated.
机译:西班牙的柱综合大气水蒸气的气候学已通过三种技术进行:测深,太阳光度计和GPS接收器。比较来自配备有其中一种以上仪器的台站的数据,我们发现2006年11月6日发生了很大的不连续,其原因在于GPS接收机的数据序列与其他两种技术的数据序列之间存在差异。在该日期之前,与测深或光度计数据相比,GPS数据指示所有站点的湿偏度为2-3 mm,而在此日期之后,该偏度实际上减小为零。均方根误差也减小了其值的一半。 2006年11月6日,国际GNSS服务对GPS卫星和接收器的天线采用了绝对校准模型,而不是相对模型。预计这种变化将有所改善,提高站位确定的准确性,并因此受益于诸如天顶总延迟之类的后处理产品,据此可以计算出大气水汽含量。

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