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Satellite Laser Ranging for Retrieval of the Local Values of the Love

机译:卫星激光器测距检索爱的当地价值观

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摘要

This paper deals with the analysis of local Love and Shida numbers (parameters h2 and l2) values of the Australian Yarragadee and Mount Stromlo satellite laser ranging (SLR) stations. The research was conducted based on data from the Medium Earth Orbit (MEO) satellites, LAGEOS-1 and LAGEOS-2, and Low Earth Orbit (LEO) satellites, STELLA and STARLETTE. Data from a 60-month time interval, from 01.01.2014 to 01.01.2019, was used. In the first research stage, the Love and Shida numbers values were determined separately from observations of each satellite; the obtained values of h2, l2 exhibit a high degree of compliance, and the differences do not exceed formal error values. At this stage, we found that it was not possible to determine l2 from the data of STELLA and STARLETTE. In the second research stage, we combined the satellite observations of MEO (LAGEOS-1+LAGEOS-2) and LEO (STELLA+STARLETTE) and redefined the h2, l2 parameters. The final values were adopted, and further analyses were made based on the values obtained from the combined observations. For the Yarragadee station, local h2 = 0.5756 ± 0.0005 and l2 = 0.0751 ± 0.0002 values were obtained from LAGEOS-1 + LAGEOS-2 and h2 = 0.5742 ± 0.0015 were obtained from STELLA+STARLETTE data. For the Mount Stromlo station, we obtained the local h2 = 0.5601 ± 0.0006 and l2 = 0.0637 ± 0.0003 values from LAGEOS-1+LAGEOS-2 and h2 = 0.5618 ± 0.0017 from STELLA + STARLETTE. We found discrepancies between the local parameters determined for the Yarragadee and Mount Stromlo stations and the commonly used values of the h2, l2 parameters averaged for the whole Earth (so-called global nominal parameters). The sequential equalization method was used for the analysis, which allowed to determine the minimum time interval necessary to obtain stable h2, l2 values. It turned out to be about 50 months. Additionally, we investigated the impact of the use of local values of the Love/Shida numbers on the determination of the Yarragadee and Mount Stromlo station coordinates. We proposed to determine the stations (X, Y, Z) coordinates in International Terrestrial Reference Frame 2014 (ITRF2014) in two computational versions: using global nominal h2, l2 values and local h2, l2 values calculated during this research. We found that the use of the local values of the h2, l2 parameters in the process of determining the stations coordinates influences the result.
机译:本文涉及澳大利亚Yarrageee和Mount Stromlo卫星激光测距(SLR)站的本地爱情和什达数量(参数H2和L2)值分析。该研究是基于来自中原地球轨道(MEO)卫星,Lageos-1和Lageos-2,低地球轨道(Leo)卫星,斯特拉和Starlette的数据进行的。从60个月的时间间隔,从01.01.2014到01.01.2019使用的数据。在第一研究阶段,爱情和Shida数值与每个卫星的观察分开确定;所获得的H 2,L2的值表现出高度的顺应性,差异不超过正式误差值。在这个阶段,我们发现无法从Stella和Starlette的数据确定L2。在第二研究阶段,我们将Meo(Lageos-1 + Lageos-2)和Leo(Stella + Starlette)的卫星观察组合并重新定义了H2,L2参数。采用最终值,并根据从组合观察结果获得的值进行进一步分析。对于Yarragodee站,局部H2 = 0.5756±0.0005和L2 = 0.0751±0.0002值从Lageos-1 + LageS-2获得,H2 = 0.5742±0.0015,从Stella + Starlette数据获得。对于安装的Stromlo站,我们获得的局部H2 = 0.5601±0.0006和L2 = 0.0637±0.03 = 0.0637±0.03 = 0.0637±0.03值,从Stella + Starlette的Lageos-1 + Lageos-2和H2 = 0.5618±0.0017。我们发现为Yarrageee和Mount Stromlo站确定的本地参数之间的差异以及用于整个地球的H2,L2参数的常用值(所谓的全局标称参数)。顺序均衡方法用于分析,其允许确定获得稳定H2,L2值所需的最小时间间隔。它结果为大约50个月。此外,我们调查了利用当地价值对yarragadee和Mount Stromlo Station坐标的确定的影响。我们建议在两个计算版本中确定国际地面参考框架2014(ITRF2014)中的站(X,Y,Z)坐标:使用在本研究期间计算的全局标称H2,L2值和局部H2,L2值。我们发现使用H2,L2参数的局部值在确定站坐标的过程中影响结果。

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