首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Analysing the Zenith Tropospheric Delay Estimates in On-line Precise Point Positioning (PPP) Services and PPP Software Packages
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Analysing the Zenith Tropospheric Delay Estimates in On-line Precise Point Positioning (PPP) Services and PPP Software Packages

机译:分析在线精确点定位(PPP)服务和PPP软件包中的天顶对流层延迟估计

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摘要

As Global Navigation Satellite System (GNSS) signals travel through the troposphere, a tropospheric delay occurs due to a change in the refractive index of the medium. The Precise Point Positioning (PPP) technique can achieve centimeter/millimeter positioning accuracy with only one GNSS receiver. The Zenith Tropospheric Delay (ZTD) is estimated alongside with the position unknowns in PPP. Estimated ZTD can be very useful for meteorological applications, an example is the estimation of water vapor content in the atmosphere from the estimated ZTD. PPP is implemented with different algorithms and models in online services and software packages. In this study, a performance assessment with analysis of ZTD estimates from three PPP online services and three software packages is presented. The main contribution of this paper is to show the accuracy of ZTD estimation achievable in PPP. The analysis also provides the GNSS users and researchers the insight of the processing algorithm dependence and impact on PPP ZTD estimation. Observation data of eight whole days from a total of nine International GNSS Service (IGS) tracking stations spread in the northern hemisphere, the equatorial region and the southern hemisphere is used in this analysis. The PPP ZTD estimates are compared with the ZTD obtained from the IGS tropospheric product of the same days. The estimates of two of the three online PPP services show good agreement (<1 cm) with the IGS ZTD values at the northern and southern hemisphere stations. The results also show that the online PPP services perform better than the selected PPP software packages at all stations.
机译:随着全球导航卫星系统(GNSS)信号穿过对流层,由于介质折射率的变化,对流层延迟发生。精确点定位(PPP)技术仅使用一个GNSS接收器即可达到厘米/毫米的定位精度。估计了天顶对流层延迟(ZTD)以及PPP中的未知位置。估计的ZTD对于气象应用可能非常有用,例如,可以根据估计的ZTD估算大气中的水蒸气含量。 PPP通过在线服务和软件包中的不同算法和模型来实现。在这项研究中,提出了一种性能评估,其中包括对来自三个PPP在线服务和三个软件包的ZTD估计值的分析。本文的主要贡献是表明在PPP中可以实现的ZTD估计的准确性。该分析还为GNSS用户和研究人员提供了处理算法依赖性以及对PPP ZTD估计的影响的见解。该分析使用了分布在北半球,赤道地区和南半球的总共九个国际GNSS服务(IGS)跟踪站对整个八天的观测数据。将PPP ZTD估计值与从同一天的IGS对流层乘积获得的ZTD进行比较。三个在线PPP服务中的两个估计值与北半球和南半球站的IGS ZTD值显示出良好的一致性(<1 cm)。结果还显示,在线PPP服务在所有站点上的性能均优于选定的PPP软件包。

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