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Comparison of ITRF2014 station coordinate input time series of DORIS, VLBI and GNSS

机译:DORF,VLBI和GNSS的ITRF2014站坐标输入时间序列的比较

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In this paper station coordinate time series from three space geodesy techniques that have contributed to the realization of the International Terrestrial Reference Frame 2014 (ITRF2014) are compared. In particular the height component time series extracted from official combined intra-technique solutions submitted for ITRF2014 by DORIS, VLBI and GNSS Combination Centers have been investigated. The main goal of this study is to assess the level of agreement among these three space geodetic techniques. A novel analytic method, modeling time series as discrete-time Markov processes, is presented and applied to the compared time series. The analysis method has proven to be particularly suited to obtain quasi-cyclostationary residuals which are an important property to carry out a reliable harmonic analysis. We looked for common signatures among the three techniques. Frequencies and amplitudes of the detected signals have been reported along with their percentage of incidence. Our comparison shows that two of the estimated signals, having one-year and 14 days periods, are common to all the techniques. Different hypotheses on the nature of the signal having a period of 14 days are presented. As a final check we have compared the estimated velocities and their standard deviations (STD) for the sites that co-located the VLBI, GNSS and DORIS stations, obtaining a good agreement among the three techniques both in the horizontal (1.0 mm/yr mean STD) and in the vertical (0.7 mm/yr mean STD) component, although some sites show larger STDs, mainly due to lack of data, different data spans or noisy observations.
机译:在本文中,对三种有助于实现国际地面参考框架2014(ITRF2014)的空间大地测量技术中的坐标时间序列进行了比较。特别是,调查了从DORIS,VLBI和GNSS组合中心提交给ITRF2014的官方联合技术内解决方案中提取的高度分量时间序列。这项研究的主要目的是评估这三种空间大地测量技术之间的一致性水平。提出了一种将时间序列建模为离散时间马尔可夫过程的新颖分析方法,并将其应用于比较时间序列。事实证明,该分析方法特别适合于获得准环平稳残差,这是进行可靠的谐波分析的重要属性。我们在这三种技术中寻找了共同的签名。已经报告了检测到的信号的频率和幅度及其发生率。我们的比较显示,所有技术都共有两个估计信号,分别为一年和14天。提出了关于具有14天周期的信号性质的不同假设。作为最终检查,我们比较了VLBI,GNSS和DORIS测站并置的站点的估计速度及其标准偏差(STD),在水平(1.0毫米/年平均值)的三种技术之间均取得了良好的一致性。 STD)和垂直(平均STD为0.7毫米/年)部分,尽管某些站点显示较大的STD,主要是由于缺乏数据,不同的数据跨度或嘈杂的观测结果。

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