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On comparison of the Earth orientation parameters obtained from different VLBI networks and observing programs

机译:比较从不同的VLBI网络获得的地球方向参数和观测程序

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摘要

In this paper, a new geometry index of very long baseline interferometry (VLBI) observing networks, the volume of network V, is examined as an indicator of the errors in the Earth orientation parameters (EOP) obtained from VLBI observations. It has been shown that both EOP precision and accuracy can be well described by the power law σ = a V~c in a wide range of the network size from domestic to global VLBI networks. In other words, as the network volume grows, the EOP errors become smaller following a power law. This should be taken into account for a proper comparison of EOP estimates obtained from different VLBI networks. Thus, performing correct EOP comparison allows us to investigate accurately finer factors affecting the EOP errors. In particular, it was found that the dependence of the EOP precision and accuracy on the recording data rate can also be described by a power law. One important conclusion is that the EOP accuracy depends primarily on the network geometry and to lesser extent on other factors, such as recording mode and data rate and scheduling parameters, whereas these factors have a stronger impact on the EOP precision.
机译:在本文中,研究了一种非常长的基线干涉测量(VLBI)观测网络的新几何指标,即网络V的体积,作为从VLBI观测获得的地球方向参数(EOP)误差的指标。已经证明,在从国内到全球VLBI网络的广泛网络规模范围内,幂律σ= a Vc都能很好地描述EOP的精度和准确性。换句话说,随着网络容量的增长,遵循幂定律,EOP错误会变小。为了正确比较从不同VLBI网络获得的EOP估算值,应考虑到这一点。因此,执行正确的EOP比较可以使我们准确地调查影响EOP错误的更精细的因素。特别地,发现EOP精度和准确性对记录数据速率的依赖性也可以通过幂定律来描述。一个重要的结论是,EOP精度主要取决于网络的几何形状,而在较小程度上取决于其他因素,例如记录模式,数据速率和调度参数,而这些因素对EOP精度的影响更大。

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