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GRACE gravity field modeling with an investigation on correlation between nuisance parameters and gravity field coefficients

机译:GRACE重力场建模,研究有害参数与重力场系数之间的相关性

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摘要

The GRACE (Gravity Recovery And Climate Experiment) monthly gravity models have been independently produced and published by several research institutions, such as Center for Space Research (CSR), GeoForschungsZentrum (GFZ), Jet Propulsion Laboratory (JPL), Centre National d'Etudes Spatiales (CNES) and Delft Institute of Earth Observation and Space Systems (DEOS). According to their processing standards, above institutions use the traditional variational approach except that the DEOS exploits the acceleration approach. The background force models employed are rather similar. The produced gravity field models generally agree with one another in the spatial pattern. However, there are some discrepancies in the gravity signal amplitude between solutions produced by different institutions. In particular, 10%-30% signal amplitude differences in some river basins can be observed. In this paper, we implemented a variant of the traditional variational approach and computed two sets of monthly gravity field solutions using the data from January 2005 to December 2006. The input data are K-band range-rates (KBRR) and kinematic orbits of GRACE satellites. The main difference in the production of our two types of models is how to deal with nuisance parameters. This type of parameters is necessary to absorb low-frequency errors in the data, which are mainly the aliasing and instrument errors. One way is to remove the nuisance parameters before estimating the geopotential coefficients, called NPARB approach in the paper. The other way is to estimate the nuisance parameters and geopotential coefficients simultaneously, called NPESS approach. These two types of solutions mainly differ in geopotential coefficients from degree 2 to 5. This can be explained by the fact that the nuisance parameters and the gravity field coefficients are highly correlated, particularly at low degrees. We compare these solutions with the official and published ones by means of spectral analysis. It is found that our solutions are, in general, consistent with others in the spatial pattern. The water storage variations of the Amazon, Chari and Ganges river basins have also been computed. The variations computed with the NPARB approach are closer to those produced by JPL and DEOS solutions, while the variations produced with the NPESS approach are in good agreement with those produced by the CSR and GFZ solutions. A simulation study is implemented with considering realistic noise and low-frequency error. The two approaches are used to recover the true model. The NPESS solution appears closer to the true one. Therefore we are inclined to estimate the nuisance parameters simultaneously with the geopential coefficients.
机译:GRACE(重力恢复和气候实验)月度重力模型是由多个研究机构独立制作和发布的,例如空间研究中心(CSR),GeoForschungsZentrum(GFZ),喷气推进实验室(JPL),国家研究中心空间(CNES)和代尔夫特地球观测与空间系统研究所(DEOS)。根据它们的处理标准,以上机构使用传统的变分方法,但DEOS采用加速方法。使用的背景力模型相当相似。产生的重力场模型通常在空间模式上彼此一致。但是,不同机构产生的解决方案之间的重力信号振幅存在一些差异。特别是在某些流域中,可以观察到10%-30%的信号幅度差异。在本文中,我们实现了传统变分方法的一种变体,并使用2005年1月至2006年12月的数据计算了两组月度重力场解决方案。输入数据为GRACE的K波段范围率(KBRR)和运动轨道卫星。两种模型在生产上的主要区别在于如何处理令人讨厌的参数。这种类型的参数对于吸收数据中的低频误差(主要是混叠误差和仪器误差)是必需的。一种方法是在估计地电势系数之前删除讨厌的参数,在本文中称为NPARB方法。另一种方法是同时估算有害参数和地势系数,称为NPESS方法。这两类解决方案的主要地势系数从2度到5度不同。这可以通过以下事实来解释:扰动参数和重力场系数高度相关,尤其是在低度时。我们通过光谱分析将这些解决方案与官方和已发布的解决方案进行了比较。发现我们的解决方案通常在空间模式上与其他解决方案一致。还计算了亚马逊河,查理河和恒河流域的储水量。用NPARB方法计算出的变化接近于JPL和DEOS解决方案产生的变化,而用NPESS方法产生的变化与CSR和GFZ解决方案产生的变化非常吻合。在考虑实际噪声和低频误差的情况下进行了仿真研究。这两种方法用于恢复真实模型。 NPESS解决方案似乎更接近于真正的解决方案。因此,我们倾向于与地势系数同时估计有害参数。

著录项

  • 来源
    《Advances in space research》 |2011年第10期|p.1833-1850|共18页
  • 作者单位

    GNSS Research Center, Wuhan University, 129 Luoyu Road, Wuhan 430079, China,State Key Laboratory of Information Engineering in Surveying, Mapping and Remote Sensing, Wuhan University, 129 Luoyu Road, Wuhan 430079, China;

    GNSS Research Center, Wuhan University, 129 Luoyu Road, Wuhan 430079, China,School of Geodesy and Geomatics, Wuhan University, 129 Luoyu Road, Wuhan 430079, China;

    GNSS Research Center, Wuhan University, 129 Luoyu Road, Wuhan 430079, China,School of Geodesy and Geomatics, Wuhan University, 129 Luoyu Road, Wuhan 430079, China;

    GNSS Research Center, Wuhan University, 129 Luoyu Road, Wuhan 430079, China,State Key Laboratory of Information Engineering in Surveying, Mapping and Remote Sensing, Wuhan University, 129 Luoyu Road, Wuhan 430079, China;

    GNSS Research Center, Wuhan University, 129 Luoyu Road, Wuhan 430079, China;

    GNSS Research Center, Wuhan University, 129 Luoyu Road, Wuhan 430079, China,School of Geodesy and Geomatics, Wuhan University, 129 Luoyu Road, Wuhan 430079, China;

    Fugro lnlersite B.V., Dillenburgsingel 69, 2263 HW Leidschendum, The Netherlands;

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

    GRACE; gravity field coefficients; NPARB; NEPSS; nuisance parameters; simulation;

    机译:恩典;重力场系数NPARB;NEPSS;干扰参数;模拟;

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