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RINEX_HO: Second- and third-order ionospheric corrections for RINEX observation files

机译:RINEX_HO:RINEX观测文件的二阶和三阶电离层校正

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When GNSS receivers capable of collecting dual-frequency data are available, it is possible to eliminate the first-order ionospheric effect in the data processing through the ionosphere-free linear combination. However, the second- and third-order ionospheric effects still remain. The first-, second- and third-order ionospheric effects are directly proportional to the total electron content (TEC), although the second- and third-order effects are influenced, respectively, by the geomagnetic field and the maximum electron density. In recent years, the international scientific community has given more attention to these kinds of effects and some works have shown that for high precision GNSS positioning these effects have to be taken into consideration. We present a software tool called RINEX_HO that was developed to correct GPS observables for second- and third-order ionosphere effects. RINEX_HO requires as input a RINEX observation file, then computes the second- and third-order ionospheric effects, and applies the corrections to the original GPS observables, creating a corrected RINEX file. The mathematical models implemented to compute these effects are presented, as well as the transformations involving the earth's magnetic field. The use of TEC from global ionospheric maps and TEC calculated from raw pseudorange measurements or pseudoranges smoothed by phase is also investigated.
机译:当能够收集双频数据的GNSS接收机可用时,可以通过无电离层线性组合消除数据处理中的一阶电离层效应。但是,二阶和三阶电离层效应仍然存在。一阶,二阶和三阶电离层效应与总电子含量(TEC)直接成正比,尽管二阶和三阶效应分别受地磁场和最大电子密度的影响。近年来,国际科学界对这类影响给予了更多关注,一些工作表明,对于高精度GNSS定位,必须考虑这些影响。我们提供了一个名为RINEX_HO的软件工具,该工具用于纠正GPS观测值对二阶和三阶电离层的影响。 RINEX_HO需要输入RINEX观测文件作为输入,然后计算二阶和三阶电离层效应,并将校正应用于原始GPS观测值,从而创建校正后的RINEX文件。介绍了为计算这些效应而实现的数学模型,以及涉及地球磁场的转换。还研究了使用来自全球电离层图的TEC和根据原始伪距测量值或经相位平滑的伪距计算得出的TEC。

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