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The ITG-Goce02 gravity field model from GOCE orbit and gradiometer data based on the short arc approach

机译:基于短弧方法的GOCE轨道和梯度计数据中的ITG-Goce02重力场模型

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In this contribution, we describe the global GOCE-only gravity field model ITG-Goce02 derived from 7.5 months of gradiometer and orbit data. This model represents an alternative to the official ESA products as it is computed completely independently, using a different processing strategy and a separate software package. Our model is derived using the short arc approach, which allows a very effective decorrelation of the highly correlated GOCE gradiometer and orbit data noise by introducing a full empirical covariance matrix for each arc, and gives the possibility to downweight 'bad' arcs. For the processing of the orbit data we rely on the integral equation approach instead of the energy integral method, which has been applied in several other GOCE models. An evaluation against high-resolution global gravity field models shows very similar differences of our model compared to the official GOCE results published by ESA (release 2), especially to the model derived by the time-wise approach. This conclusion is confirmed by comparison of the GOCE models to GPS/levelling and altimetry data.
机译:在此贡献中,我们描述了仅基于GOCE的全球重力场模型ITG-Goce02,该模型源自7.5个月的梯度仪和轨道数据。该模型代表了ESA官方产品的替代产品,因为它使用不同的处理策略和单独的软件包完全独立地计算。我们的模型是使用短弧方法推导的,该方法通过为每个弧引入完整的经验协方差矩阵,可以对高度相关的GOCE梯度仪和轨道数据噪声进行非常有效的去相关,并为降低“坏”弧的可能性提供了可能性。对于轨道数据的处理,我们依靠积分方程方法而不是能量积分方法,该方法已在其他多个GOCE模型中应用。对高分辨率全球重力场模型的评估显示,与ESA(版本2)发布的官方GOCE结果相比,我们模型的差异非常相似,尤其是与按时间方法得出的模型相比。通过将GOCE模型与GPS /水准仪和测高仪数据进行比较,可以证实这一结论。

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