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Real-time single-frequency pseudorange positioning in China based on regional satellite clock and ionospheric models

机译:基于区域卫星时钟和电离层模型的中国实时单频伪距定位

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Improving performance of single-point positioning (SPP) with single-frequency pseudorange measurement is important for users equipped with mass-market or low-cost receivers. Considering a regional single-frequency SPP service is available, it is not necessary to realize precise orbit determination for single-frequency SPP. Instead, the ionospheric modeling is of utmost importance. Based on BDS/GPS broadcast ephemeris, we establish a regional satellite clock model (CLK) and two regional ionospheric models in China using 155 reference stations and investigate their efficiency in improving the performance of BDS/GPS SPP with additional 499 reference stations. Two ionospheric models are established based on different total electron content (TEC) observables; one is the low-order spherical harmonic function model (SHF) with vertical TEC observables and the other is the satellite-based ionospheric model (SIM) with slant TEC observables. It is demonstrated that the SIM model performs better than SHF model as it avoids the error due to the ionospheric mapping function. Overall, the positioning results with CLK+SIM perform the best for BDS-only, GPS-only, and BDS/GPS SPP. Compared to the positioning results with the broadcast ephemeris and the Klobuchar model, the SPP positioning accuracy with the CLK+SIM model improves by about 50% on average. By using the improved model CLK+SIM, the BDS/GPS SPP positioning accuracy is better than 1.5 m and 2.0 m at the 95% confidence level in the horizontal and vertical directions, respectively. Also, by comparing the SPP performance with IGS final products, including the GeoForschungsZentrum precise orbits and clock products and Center for Orbit Determination in Europe final GIMs, the proposed model in this study performs better than that with the IGS final products in terms of positioning accuracy and model complexity.
机译:提高单频伪距测量单点定位(SPP)的性能对于配备大众市场或低成本接收器的用户来说很重要。考虑到区域单频SPP服务可用,无需实现单频SPP的精确轨道确定。相反,电离层模型至关重要。基于BDS / GPS播放星历,我们在中国建立了一个区域卫星时钟模型(CLK)和两个区域电离层模型,使用了155个参考站,并研究了提高BDS / GPS SPP的效率,并使用额外的499个参考站提高BDS / GPS SPP的性能。基于不同的电子含量(TEC)可观察到,建立两个电离层模型;一个是具有垂直TEC可观察到的低位球形谐波函数模型(SHF),另一个是卫星基电离层模型(SIM),具有倾斜TEC可观察到。据证明SIM模型比SHF模型更好,因为它避免了由于电离层映射函数引起的错误。总的来说,使用CLK + SIM的定位结果最适合BDS,仅GPS和BDS / GPS SPP。与广播星历和Klobuchar模型的定位结果相比,具有CLK + SIM模型的SPP定位精度平均提高了大约50%。通过使用改进的模型CLK + SIM,分别在水平和垂直方向上的95%置信水平处优于1.5米和2.0μm,BDS / GPS SPP定位精度优于1.5米和2.0米。此外,通过将SPP性能与IGS最终产品进行比较,包括Geoforschungszentrum精确的轨道和时钟产品和欧洲最终GIM的轨道产品中心,本研究中的拟议模型比在定位精度方面比IGS最终产品更好地表现更好和模型复杂性。

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