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Uncertainties and effects on geocenter motion estimates from global GPS observations

机译:全球GPS观测值对不确定性和对地球中心运动估计的影响

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摘要

Global positioning system (GPS) observations can be used to estimate the geocenter motion, but are subjected to large uncertainties and effects due to uneven distribution of GPS stations and high-degree aliasing errors. In this paper, uncertainties and effects on geocenter motion estimates from global GPS observations are investigated and assessed with different truncated degrees and selected GPS network distributions based on different plate motion models, including NUVEL-1A, MORVEL56 and ITRF08. Results show that the selected GPS stations have no big effects on geocenter motion estimates based on different plate motion models, while large uncertainties are found at annual and semi-annual components when using different truncated degrees. Correlations of geocenter motion estimates from selected GPS networks with GRACE and SLR are better with truncated degree 3, and higher truncated degrees will degrade geocenter estimates. Smaller RMS also shows better results with the truncated degree 3 and the NUVEL1A has the worse results because more GPS sites are eliminated. For annual signal with truncated degree 3, four GPS strategies can reduce annual amplitudes by about 29.2% in X, 5.6% in Y, and 27.9% in Z with respect to truncated degree 1. Annual phases of all GPS solutions from MORVEL56 and ITRF08 are almost close to the GRACE solution with truncated degrees from 3 to 10, while the semi-annual signals are relatively weaker for all cases.
机译:全球定位系统(GPS)观测值可用于估计地球中心运动,但由于GPS站分布不均和高度混叠误差,因此存在很大的不确定性和影响。在本文中,使用不同的截断度和基于不同板块运动模型(包括NUVEL-1A,MORVEL56和ITRF08)选择的GPS网络分布,研究和评估了来自全球GPS观测的不确定性和对地球中心运动估计的影响。结果表明,选择的GPS站对基于不同板块运动模型的地球中心运动估计没有太大影响,而当使用不同的截断度时,在年度和半年度分量中发现较大的不确定性。截断度为3时,来自选定GPS网络与GRACE和SLR的地球中心运动估计的相关性更好,而截断度越高,将降低地球中心的估计率。均方根值3时,较小的RMS也会显示较好的结果,而NUVEL1A的结果较差,因为消除了更多的GPS位置。对于3级截断的年度信号,相对于1级截断,四种GPS策略可以使X的年振幅分别减小X的29.2%,Y的5.6%和Z的27.9%,这是从MORVEL56和ITRF08开始的所有GPS解决方案的年度阶段为截断度从3到10几乎接近GRACE解,而在所有情况下半年信号相对较弱。

著录项

  • 来源
    《Advances in space research》 |2014年第1期|59-71|共13页
  • 作者

    Xinggang Zhang; Shuanggen Jin;

  • 作者单位

    Shanghai Astronomical Observatory, Chinese Academy of Sciences, Shanghai 200030, China ,University of Chinese Academy of Sciences, Beijing 100049, China;

    Shanghai Astronomical Observatory, Chinese Academy of Sciences, Shanghai 200030, China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Geocenter motion; Surface loading; GPS; GRACE; SLR;

    机译:地心运动;表面载荷;全球定位系统;恩典;单反相机;

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