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首页> 外文期刊>Journal of Geodesy >Contributions to reference systems from Lunar Laser Ranging using the IfE analysis model
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Contributions to reference systems from Lunar Laser Ranging using the IfE analysis model

机译:使用IfE分析模型的月球激光测距对参考系统的贡献

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Lunar Laser Ranging (LLR) provides various quantities related to reference frames like Earth orientation parameters, coordinates and velocities of ground stations in the Earth-fixed frame and selenocentric coordinates of the lunar retro-reflectors. This paper presents the recent results from LLR data analysis at the Institut für Erdmessung, Leibniz Universität Hannover, based on all LLR data up to the end of 2016. The estimates of long-periodic nutation coefficients with periods between 13.6 days and 18.6 years are obtained with an accuracy in the order of 0.05–0.7 milliarcseconds (mas). Estimations of the Earth rotation phase $$Delta $$ Δ UT are accurate at the level of 0.032 ms if more than 14 normal points per night are included. The tie between the dynamical ephemeris frame to the kinematic celestial frame is estimated from pure LLR observations by two angles and their rates with an accuracy of 0.25 and 0.02 mas per year. The estimated station coordinates and velocities are compared to the ITRF2014 solution and the geometry of the retro-reflector network with the DE430 solution. The given accuracies represent 3 times formal errors of the parameter fit. The accuracy for $$Delta $$ Δ UT is based on the standard deviation of the estimates with respect to the reference C04 solution.
机译:月球激光测距(LLR)提供了与参考系有关的各种量,例如地球定向参数,固定在地架中的地面站的坐标和速度以及月球后向反射镜的偏心坐标。本文基于截至2016年底的所有LLR数据,介绍了汉诺威莱布尼兹大学(University of Hannover)的Erdmessung研究所的LLR数据分析的最新结果。得出了在13.6天至18.6年之间的长周期章动系数的估计值精确度约为0.05-0.7毫秒(质量)。如果包括每晚超过14个标准点,则地球自转相位$$ Delta $$ΔUT的估算值精确到0.032毫秒。动态星历框架与运动天体框架之间的关系是从纯LLR观测值通过两个角度及其速率估计的,每年精度为0.25和0.02mas。将估计的站点坐标和速度与ITRF2014解决方案以及采用DE430解决方案的后向反射镜网络的几何形状进行比较。给定的精度代表参数拟合的形式误差的3倍。 $$ Delta $$ΔUT的精度基于相对于参考C04解决方案的估算值的标准偏差。

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