不同对流层映射函数对多模GNSS实时PPP-AR性能影响

The effects of different tropospheric mapping functions for multi-GNSS real-time precise point positioning with ambiguity resolution performance

  • 摘要: 对流层映射函数对精密单位定位(precise point positioning,PPP)模糊度固定(ambiguity resolution,AR)的影响不容忽视. 通过国际GNSS服务(International GNSS Service,IGS)的网络差分实时传输协议分发服务器的挂载点OSBC00WHU1接收了武汉大学实时精密轨道、卫星钟差、地球自转参数及原始观测值信号偏差(observable-specific signal bias,OSB)产品,结合澳大利亚地区均匀分布的11个多模GNSS实验跟踪网(Multi-GNSS Experiment,MGEX)测站观测数据,研究了尼尔映射函数(Niell mapping function,NMF)、全球映射函数(global map function,GMF)、维也纳映射函数1 (Vienna mapping functions 1,VMF1)和维也纳映射函数3(Vienna mapping function,VMF3)四种对流层映射函数对北斗卫星导航系统(BeiDou Navigation Satellite System,BDS)、BDS/GPS、BDS/GPS/Galileo实时PPP-AR性能影响. 实验结果表明:四种对流层映射函数对BDS、BDS/GPS、BDS/GPS/Galileo实时PPP-AR性能影响较小. 使用GMF和VMF3对流层映射函数实时PPP-AR性能基本相当,优于NMF和VMF1. 动态和静态模式BDS实时PPP-AR在东(E)和北(N)方向上平均定位精度基本相当,约为1.0 cm;在天(U)方向上平均定位精度存在明显差异,约为3.5 cm和2.6 cm. BDS/GPS/Galileo实时PPP-AR平均定位精度相比BDS整体提升较大;相比BDS/GPS整体提升较小.

     

    Abstract: The effects of tropospheric mapping functions on the precise point positioning with ambiguity resolution (PPP-AR) should not be neglected . Real-time data for Wuhan University’s precise orbits, satellite clock biases, earth rotation parameters, and observable-specific signal bias (OSB) products were received through the international GNSS service (IGS) ntrip client mount point OSBC00WHU1. The data were combined with observations from 11 multi-GNSS experiment (MGEX) stations distributed in Australia. The study investigated the effects of four tropospheric mapping functions, including Niel mapping function (NMF), global mapping function (GMF), Vienna mapping function 1 (VMF1), and Vienna mapping function 3 (VMF3) for real-time PPP-AR performance of the BeiDou navigation satellite system (BDS), BDS/GPS, and BDS/GPS/Galileo. The experimental results showed that the four tropospheric mapping functions had minimal effects for real-time PPP-AR performance of BDS, BDS/GPS, and BDS/GPS/Galileo. The use of GMF and VMF3 provided comparable real-time PPP-AR performance, outperforming NMF and VMF1. The average positioning accuracy of BDS real-time PPP-AR in the dynamic and static modes is generally comparable in the east and north directions, both around 1.0 cm. However, there is a significant difference in the average positioning accuracy in the up direction, approximately 3.5 cm and 2.6 cm, respectively. The average positioning accuracy of BDS/GPS/Galileo real-time PPP-AR shows a significant improvement more than BDS, while the improvement more than BDS/GPS is relatively small.

     

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