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Systematic error estimation and analysis in SINEX file combination

机译:Sinex文件组合中的系统误差估计与分析

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One goal of the IERS to define and maintain the ITRF is to combine all major space geodetic techniques (GPS, VLBI, SLR, LLR and DORIS solution in the SINEX format) into an integrated consistent set of high-accuracy products. In such a combination, estimating and removing the systematic errors between different SINEX files is an important issue. For this purpose software GNAS (Geodesy Network Analysis System) is developed, which is able to estimate 7 Helmert transformation parameters of station coordinates within the process of combination Besides, the GNAS software enables us to combine EOPs and station coordinates not only separately, but also simultaneously. We discuss the advantages and disadvantages when systematic parameters are estimated for each Analysis Center (AC) or for each SINEX file. One can estimate either the whole 7 Helmert parameters or only a set of them (e.g. without 3 rotation parameters) Different procedures have different effects on the combined solutions, especially when EOPs and station coordinates are combined simultaneously Detailed discussions, numerical examples and some results analysis are given in this paper.
机译:IERS定义和维护ITRF的一个目标是将所有主要的空间大地电线电压技术(GPS,VLBI,SLR,LLR和Doris解决方案以Sinex格式相结合到一组集成的一致高精度产品集。在这样的组合中,估计和删除不同SINEx文件之间的系统错误是一个重要问题。为此目的,开发了GNA(Geodesy网络分析系统),其能够在组合过程中估算站坐标的7升降座坐标,使我们能够将EOPS和站协会不仅单独,而且同时。当每个分析中心(AC)或每个SINEx文件估计系统参数时,我们讨论了优点和缺点。人们可以估计整个7升降机参数或仅包含它们的一组(例如,没有3次旋转参数)不同的程序对组合解决方案具有不同的影响,特别是当EOP和站坐标同时详细讨论时,数值例子和一些结果分析本文给出了。

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