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Analysis of star camera errors in GRACE data and their impact on monthly gravity field models

机译:分析GRACE数据中的星形相机误差及其对月重力场模型的影响

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Star cameras (SCs) on board the GRACE satellites provide information about the attitudes of the spacecrafts. This information is needed to reduce the K-band ranging data to the centre of mass of the satellites. In this paper, we analyse GRACE SC errors using two months of real data of the primary and secondary SCs. We show that the errors consist of a harmonic component, which is highly correlated with the satellite's true anomaly, and a stochastic component. We built models of both error components, and use these models for error propagation studies. Firstly, we analyse the propagation of SC errors into inter-satellite accelerations. A spectral analysis reveals that the stochastic component exceeds the harmonic component, except in the 3-10 mHz frequency band. In this band, which contains most of the geophysically relevant signal, the harmonic error component is larger than the random component. Secondly, we propagate SC errors into optimally filtered monthly mass anomaly maps and compare them with the total error. We found that SC errors account for about 18 % of the total error. Moreover, gaps in the SC data series amplify the effect of SC errors by a factor of . Finally, an analysis of inter-satellite pointing angles for GRACE data between 2003 and 2010 reveals that inter-satellite ranging errors were exceptionally large during the period February 2003 till May 2003. During these months, SC noise is amplified by a factor of 3 and is a considerable source of errors in monthly GRACE mass anomaly maps. In the context of future satellite gravity missions, the noise models developed in this paper may be valuable for mission performance studies.
机译:GRACE卫星上的星空摄像机(SC)提供有关航天器姿态的信息。需要此信息以将K波段测距数据减小到卫星质心。在本文中,我们使用两个月的主要和次要SC的真实数据来分析GRACE SC错误。我们表明,误差由与卫星的真实异常高度相关的谐波分量和随机分量组成。我们建立了两个错误组件的模型,并将这些模型用于错误传播研究。首先,我们分析了SC错误向卫星间加速度的传播。频谱分析表明,除了3-10 mHz频带外,随机分量超过了谐波分量。在包含大部分地球物理相关信号的频带中,谐波误差分量大于随机分量。其次,我们将SC错误传播到经过最佳过滤的月度质量异常图中,并将它们与总误差进行比较。我们发现,SC错误约占总错误的18%。此外,SC数据序列中的间隙将SC错误的影响放大了两倍。最后,对2003年至2010年之间GRACE数据的卫星间指向角的分析表明,在2003年2月至2003年5月期间,卫星间测距误差异常大。在这几个月中,SC噪声放大了3倍,是每月GRACE质量异常图中错误的重要来源。在未来的卫星重力飞行任务中,本文开发的噪声模型对于飞行任务性能研究可能是有价值的。

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