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Orientation of the geometrically best fitting triaxial lunar ellipsoid with respect to the mean earth/polar axis reference frame

机译:几何上最合适的三轴月球椭球相对于平均地线/极轴参考系的方向

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摘要

This study provides new estimates for the orientation of a geometrically best fitting lunar triaxial ellipsoid with respect to the mean Earth/polar axis reference frame calculated from the footprint positions of the Chang'E-1 (CE-1), SELenological and ENgineering Explorer (SELENE) laser altimetry measurements and Unified Lunar Control Networks 2005, (ULCN 2005) station coordinates. The semi-principal axes of the triaxial ellipsoid and the coordinates of its geometric center are also calculated simultaneously. All the estimated parameters from all three data sets are found to be consistent. In particular, the RMS differences of the semi-principal axes of the triaxial ellipsoids and the locations of their geometric centers from solutions with and without modeling Euler angles (orientation of the triaxial ellipsoid) using uniformly distributed laser altimetry (LAL) footprints are 29 and 31 m respectively. The misclosures of all the solutions indicate a better fit for the triaxial ellipsoid to the footprint and station coordinates if the Euler angles are included in the models.
机译:这项研究为从Chang娥一号(CE-1),SELenologic和Engineering Explorer(CE-1)的足迹位置计算出的几何形状最合适的月球三轴椭球相对于平均地球/极轴参考系的方位提供了新的估计SELENE)激光测高仪测量和Unified Lunar Control Networks 2005(ULCN 2005)台站坐标。同时还计算了三轴椭球的半主轴及其几何中心的坐标。发现来自所有三个数据集的所有估计参数都是一致的。尤其是,使用均匀分布的激光测高仪(LAL)足迹进行建模和不建模的欧拉角(三轴椭圆体的方向)的解,三轴椭圆体的半主坐标轴的RMS差及其几何中心的位置分别为29和分别为31 m。如果模型中包括欧拉角,则所有解的闭合差都表明三轴椭圆体更适合足迹和测站坐标。

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