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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >GPS, BDS and Galileo ionospheric correction models: An evaluation in range delay and position domain
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GPS, BDS and Galileo ionospheric correction models: An evaluation in range delay and position domain

机译:GPS,BDS和Galileo电离层校正模型:范围延迟和位置域中的评估

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摘要

The performance of GPS Klobuchar (GPSKIob), BDS Klobuchar (BDSKlob) and NeQuick Galileo (NeQuickG) ionospheric correction models are evaluated in the range delay and position domains over China. The post processed Klobuchar-style (CODKlob) coefficients provided by the Center for Orbit Determination in Europe (CODE) and our own fitted NeQuick coefficients (NeQuickC) are also included for comparison. In the range delay domain, BDS total electrons contents (TEC) derived from 20 international GNSS Monitoring and Assessment System (iGMAS) stations and GPS TEC obtained from 35 Crust Movement Observation Network of China (CMONC) stations are used as references. Compared to BDS TEC during the short period (doy 010-020, 2015), GPSKlob, BDSKIob and NeQuickG can correct 58.4, 66.7 and 54.7% of the ionospheric delay. Compared to GPS TEC for the long period (doy 001-180, 2015), the three ionospheric models can mitigate the ionospheric delay by 64.8, 65.4 and 68.1%, respectively. For the two comparison cases, CODKlob shows the worst performance, which only reduces 57.9% of the ionospheric range errors. NeQuickC exhibits the best performance, which outperforms GPSKIob, BDSKIob and NeQuickG by 6.7, 2.1 and 6.9%, respectively. In the position domain, single-frequency stand point positioning (SPP) was conducted at the selected 35 CMONC sites using GPS C/A pseudorange with and without ionospheric corrections. The vertical position error of the uncorrected case drops significantly from 10.3 m to 4.8, 4.6, 4.4 and 4.2 m for GPSKIob, CODKlob, BDSKlob and NeQuickG, however, the horizontal position error (3.2) merely decreases to 3.1, 2.7, 2.4 and 2.3 m, respectively. NeQuickG outperforms GPSKIob and BDSKlob by 5.8 and 1.9% in vertical component, and by 25.0 and 3.2% in horizontal component.
机译:GPS Klobuchar(GPSKIOB),BDS Klobuchar(BDSKLOB)和Nequick Galileo(Nequickg)电离层校正模型的性能在中国的范围延迟和位置域中评估。还包括欧洲(代码)和我们自己的尼克克斯系数(Nequickc)的轨道确定中心提供的klobuchar-style(codklob)系数(Nequickc)。在范围延迟域中,BDS总电子内容(TEC)导出的20个国际GNSS监测和评估系统(IGAMS)站和来自中国35个地壳运动观察网络(CMONC)站的GPS TEC被用作参考。与短期内的BDS TEC相比(DOY 010-020,2015),GPSKLOB,BDSKIOB和NEQUICKG可以纠正58.4,66.7和54.7%的电离层延迟。与GPS TEC长期相比(DOY 001-180,2015),三种电离层模型可以分别减轻电离层延迟64.8,65.4和68.1%。对于两个比较案例,Codklob显示最差的性能,只能降低电离层范围误差的57.9%。 Nequickc表现出最佳性能,分别以6.7,2.1和6.9%分别优于Gpskiob,Bdskiob和Nequickg。在位置域中,使用具有电离层校正的GPS C / A伪距,在所选择的35个CMONC站点进行单频立场定位(SPP)。针对GPSKiob,Codklob,BDSklob和NequickG的10.3米至4.8,4.6,4.4和4.2 m,未校正案例的垂直位置误差显着下降。但是,水平位置误差(3.2)仅降至3.1,2.7,2.4和2.3 m分别。 Nequickg在垂直成分中以5.8%和1.9%的GPSKiob和Bdsklob优于Gpskiob和Bdsklob,水平组件中的25.0%和3.2%。

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