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Colorado geoid modeling at the US National Geodetic Survey

机译:科罗拉多大地理位置造型在美国国家大地测量调查

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The geoid computation method currently used at the US National Geodetic Survey is based on the analytical downward continuation solution of the Molodensky geodetic boundary value problem. The quasigeoid is computed first in 1 ' x 1 ' grids for the whole area, and then, the geoid is obtained by adding the geoid-quasigeoid separation term based on the simple Bouguer anomalies. A few variations in data combination and topographic/gravity reductions are tested, and three models are selected for the Colorado experiment. Historical GPS/leveling data are used as a guide in the computations. The standard deviation of geoid differences between the historical GPS/leveling data and geoid models is 5.2, 5.0 and 4.9 cm for the models of the initial run, the first and second iteration, respectively. After the models were submitted to the Colorado experiment, they were validated using the GSVS17 (Geoid Slope Validation Survey 2017) GPS/leveling data. The standard deviation of the geoid differences on 223 GSVS17 marks is 3.2, 2.6 and 2.3 cm for the three runs, respectively. In addition to the (quasi)geoid models, the geopotential numbers at 223 GSVS17 marks are also computed and submitted to the Colorado geoid computation experiment and it is evaluated in Sanchez et al. (2020 this issue).
机译:目前在美国国家大地测量调查中使用的大木偶计算方法基于Molodensky大地测量边界值问题的分析向下延续解。将Quasipeoid在整个区域的1'×1'网格中首先计算,然后,通过基于简单的Bouguer异常添加大量地偶皮旋转术语来获得大地区。测试数据组合和地形/重力减少的几种变化,并为Colorado实验选择了三种模型。历史gps / lecoling数据用作计算中的指南。历史GPS /升级数据和大地区模型之间的标准差异为5.2,5.0和4.9cm,分别为初始运行的模型,第一和第二次迭代。在将模型提交到Colorado实验后,使用GSVS17(2017年Geoid斜率验证调查)GPS / Locking数据进行验证。对于三次运行,223 GSVS17标记对大鼠差异的标准差异分别为3.2,2.6和2.3厘米。除了(准)的大地形模型之外,还计算了223个GSVS17标记的地球势数字,并提交给Colorado大地区计算实验,并在Sanchez等人中进行评估。 (2020这个问题)。

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