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An alternative method to improve gravity field models by incorporating GOCE gradient data

机译:通过合并GOCE梯度数据来改善重力场模型的另一种方法

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The aim of this paper is to present an alternative method that can be used to improve existing gravity field models via the application of gradient data from Gravity field and Ocean Circulation Explorer (GOCE). First, the proposed algorithm used to construct the observation equation is presented. Then methods for noise processing in both time and space domains aimed at reducing noises are introduced. As an example, the European Improved Gravity model of the Earth by New techniques (EIGEN5C) is modified with gradient observations over the whole lifetime of the GOCE, leading to a new gravity field model named as EGMGOCE (Earth Gravitational Model of GOCE). The results show that the cumulative geoid difference between EGMGOCE and EGM08 is reduced by 4 centimeters compared with that between EIGEN5C and Earth Gravitational Model 2008 (EGM08) up to 200 degrees. The large geoid differences between EGMGOCE and EIGEN5C mainly exist in Africa, South America, Antarctica and Himalaya, which indicates the contribution from GOCE. Compared to the newest GOCE gravity field model resolved by direct method from European Space Agency (ESA), the cumulative geoid difference is reduced by 7 centimeters up to 200 degrees.
机译:本文的目的是提出一种替代方法,该方法可通过应用重力场和海洋环流探测器(GOCE)的梯度数据来改进现有重力场模型。首先,提出了用于构造观测方程的算法。然后介绍了旨在减少噪声的时域和空域噪声处理方法。例如,通过在GOCE整个生命周期内的梯度观测对欧洲通过新技术改进的地球重力模型(EIGEN5C)进行了修改,从而产生了名为EGMGOCE(GOCE的地球引力模型)的新重力场模型。结果表明,与EIGEN5C和地球引力模型2008(EGM08)相比,EGMGOCE和EGM08之间的累积大地水准面差异减小了4厘米,最大差了200厘米。 EGMGOCE和EIGEN5C之间的大地水准面差异较大,主要存在于非洲,南美,南极洲和喜马拉雅山,这表明GOCE的贡献。与欧洲航天局(ESA)通过直接方法解析的最新GOCE重力场模型相比,最大200度的大地水准面差异减小了7厘米。

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