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GOCE Variance and Covariance Contribution to Height System Unification

机译:Goce差异和协方差为高度系统统一的贡献

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The definition and realization of vertical datum is a key concept in support of not only geodetic works but also for surveying and hydraulic studies to name a few. In the GOCE era, this is customarily done by estimating height and/or geopotential offsets with respect to a conventional reference geopotential value or to available GNSS/Leveling observations on trigonometric BMs and a GOCE-based geoid. This work investigates the influence of GOCE errors in the determination of the Hellenic Local Vertical Datum. This is facilitated through a least-squares adjustment of collocated GNSS/Leveling and GOCE geoid heights over a network of 1,542 BMs. TIM-R5, GOC005s and GOC005c Global Geopotential Models (GGMs) are used for representing the contribution of GOCE and GRACE to the Earth's gravity field. First, a weighted adjustment is carried out employing the GGMs commission error as indicative of the geoid height variance for all stations. Then, full variance-covariance matrices of the GGMs are employed for utilizing realistic GOCE error information and investigating their influence on the adjustment results. Using the available GNSS/Leveling formal errors, a Variance Component Estimation (VCE) is performed to evaluate height (h, H, N) error matrices and assess the stochastic model for the corresponding observational noise. VCE is used to address the impact of a simplified uniform variance assumption for all geoid height data on the final prediction variances in contrast to using the full covariance matrices. Finally, zero-level geopotential values are estimated for the Greek mainland following weighting schemes as the ones described above.
机译:垂直基准的定义和实现是支持不仅是大地测量工作的关键概念,而且还用于测量和液压研究以命名几个。在Goce时代,这通常通过估计关于传统参考地理位能值的高度和/或地理校展偏移来习惯,或者在三角识别BMS上的可用GNS /水平观察和基于岩石的大地区的可用GNSS / lecation观察来完成。这项工作调查了Goce错误在确定Hellenic本地垂直数据的影响。这是通过在1,542个BMS的网络上的搭配GNSS / Leveling和Goce Gyoid高度的最小二乘范围调整。 TIM-R5,GOC005S和GOC005C全球地理化模型(GGMS)用于代表地球的重力场的衰竭和恩典的贡献。首先,进行加权调整,采用GGMS委员会误差,作为所有站点的大木偶高度方差。然后,GGM的完整方差 - 协方差矩阵用于利用现实的Goce误差信息并调查它们对调整结果的影响。使用可用的GNSS / lecoling形式错误,执行方差分量估计(VCE)以评估高度(H,H,N)误差矩阵并评估对应的观察噪声的随机模型。 vCE用于解决关于使用完整的协方差矩阵对最终预测方差的所有大地理高度数据的简化均匀方差假设的影响。最后,估计在加权方案之后的希腊大陆的零层相同值作为上述的基础型。

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