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首页> 外文期刊>Journal of Geodesy >Indirect approach to invariant point determination for SLR and VLBI systems: an assessment
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Indirect approach to invariant point determination for SLR and VLBI systems: an assessment

机译:用于SLR和VLBI系统的不变点确定的间接方法:评估

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We assess the accuracy of some indirect approaches to invariant point (IVP), or system reference point, determination of satellite laser ranging (SLR) and very long baseline interferometry (VLBI) systems using both observed and simulated survey data sets. Indirect IVP determination involves the observation of targets located on these systems during specific rotational sequences and by application of geometrical models that describe the target motion during these sequences. Of concern is that most SLR and VLBI systems have limited rotational freedom thereby placing constraint on the reliability of parameter estimation, including the IVP position. We assess two current approaches to IVP analysis using survey data observed at the Yarragadee (Australia) SLR and the Medicina (Italy) VLBI sites and also simulated data of a large rotationally constrained (azimuth-elevation) VLBI system. To improve reliability we introduce and assess some new geometric conditions, including inter-axis, inter-circle and inter-target conditions, to existing IVP analysis strategies. The error component of a local tie specifically associated with the indirect determination of SLR and VLBI IVP is less than 0.5 mm. For systems with significant rotational limits we find that the inter-axis and inter-circle conditions are critical to the computation of unbiased IVP coordinates at the sub-millimetre level. When the inter-axis and inter-circle geometric conditions are not imposed, we retrieve biased vertical coordinates of the IVP (in our simulated VLBI system) in the range of 1.2-3.4 mm. Using the new geometric conditions we also find that the axis-offset estimates can be recovered at the sub-millimetre accuracy (0.5 mm).
机译:我们使用观测和模拟调查数据集评估了一些不变点(IVP)或系统参考点,确定卫星激光测距(SLR)和超长基线干涉仪(VLBI)系统的间接方法的准确性。间接IVP确定涉及观察特定旋转序列期间位于这些系统上的目标,并通过应用描述这些序列期间目标运动的几何模型进行观察。值得关注的是,大多数SLR和VLBI系统的旋转自由度有限,从而对参数估计的可靠性(包括IVP位置)施加了约束。我们使用在Yarragadee(澳大利亚)SLR和Medicina(意大利)VLBI站点观察到的调查数据以及大型旋转约束(方位角高)VLBI系统的模拟数据,评估了两种当前的IVP分析方法。为了提高可靠性,我们在现有的IVP分析策略中引入并评估了一些新的几何条件,包括轴间,圆间和目标间条件。专门与SLR和VLBI IVP的间接确定相关的局部连接的误差分量小于0.5 mm。对于具有较大旋转极限的系统,我们发现轴间和圆间条件对于计算亚毫米级的无偏IVP坐标至关重要。当未施加轴间和圆间几何条件时,我们将在1.2-3.4 mm的范围内检索IVP(在我们的模拟VLBI系统中)的有偏差的垂直坐标。使用新的几何条件,我们还发现轴偏移估计值可以以亚毫米精度(0.5 mm)恢复。

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