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Fitting a triaxial ellipsoid to a geoid model

机译:将三轴椭圆体拟合到大地线型

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The aim of this work is the determination of the parameters of Earth’s triaxiality through a geometric fitting of a triaxial ellipsoid to a set of given points in space, as they are derived from a geoid model. Starting from a Cartesian equation of an ellipsoid in an arbitrary reference system, we develop a transformation of its coefficients into the coordinates of the ellipsoid center, of the three rotation angles and the three ellipsoid semi-axes. Furthermore, we present different mathematical models for some special and degenerate cases of the triaxial ellipsoid. We also present the required mathematical background of the theory of least-squares, under the condition of minimization of the sum of squares of geoid heights. Also, we describe a method for the determination of the foot points of the set of given space points. Then, we prepare suitable data sets and we derive results for various geoid models, which were proposed in the last fifty years. Among the results, we report the semi-axes of the triaxial ellipsoid of geometric fitting with four unknowns to be 6378171.92 m, 6378102.06 m and 6356752.17 m and the equatorial longitude of the major semi-axis –14.9367 degrees. Also, the parameters of Earth’s triaxiality are directly estimated from the spherical harmonic coefficients of degree and order two. Finally, the results indicate that the geoid heights with reference to the triaxial ellipsoid are smaller than those with reference to the oblate spheroid and the improvement in the corresponding rms value is about 20 per cent.
机译:这项工作的目的是通过将三轴椭圆形的几何配合到空间中的一组给定点来确定地球三轴性的参数,因为它们来自大地区模型。从任意参考系统中的椭球的笛卡尔方程开始,我们将其系数的转变为三个旋转角度和三个椭球半轴的椭圆形中心的坐标。此外,我们为三轴椭圆体的一些特殊和简并病例提供了不同的数学模型。我们还提供了最小二乘理论的所需数学背景,在大小石高度的平方和最小化的条件下。此外,我们描述了一种确定给定空间点集的脚点的方法。然后,我们准备合适的数据集,我们获得了各种大地区模型的结果,这在过去五十年中提出。在结果中,我们报告了几何配件的三轴椭圆体的半轴,有四个未知为6378171.92米,6378102.06 m和6356752.17 m和主要半轴的赤道经度-14.9367度。而且,地球三轴分度的参数是直接从度的程度和顺序的球形谐波系数估计。最后,结果表明,参考三轴椭圆体的大量地高度小于参考弓形球体的大小,并且相应的RMS值的改善约为20%。

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