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Near real-time prediction of Zenith Tropospheric Delays for position estimation over long-baseline CORS network

机译:长基线CORS网络上用于位置估计的天顶对流层延迟的近实时预测

摘要

This paper presents the preliminary results in establishing a strategy for predicting Zenith Tropospheric Delay (ZTD) and relative ZTD (rZTD) between Continuous Operating Reference Stations (CORS) in near real-time. It is anticipated that the predicted ZTD or rZTD can assist the network-based Real-Time Kinematic (RTK) performance over long inter-station distances, ultimately, enabling a cost effective method of delivering precise positioning services to sparsely populated regional areas, such as Queensland. ududThis research firstly investigates two ZTD solutions: 1) the post-processed IGS ZTD solution and 2) the near Real-Time ZTD solution. The near Real-Time solution is obtained through the GNSS processing software package (Bernese) that has been deployed for this project. The predictability of the near Real-Time Bernese solution is analyzed and compared to the post-processed IGS solution where it acts as the benchmark solution. The predictability analyses were conducted with various prediction time of 15, 30, 45, and 60 minutes to determine the error with respect to timeliness. The predictability of ZTD and relative ZTD is determined (or characterized) by using the previously estimated ZTD as the predicted ZTD of current epoch. ududThis research has shown that both the ZTD and relative ZTD predicted errors are random in nature; the STD grows from a few millimeters to sub-centimeters while the predicted delay interval ranges from 15 to 60 minutes. Additionally, the RZTD predictability shows very little dependency on the length of tested baselines of up to 1000 kilometers. Finally, the comparison of near Real-Time Bernese solution with IGS solution has shown a slight degradation in the prediction accuracy. The less accurate NRT solution has an STD error of 1cm within the delay of 50 minutes. However, some larger errors of up to 10cm are observed. ud
机译:本文介绍了建立实时预测连续运行参考站(CORS)之间的天顶对流层延迟(ZTD)和相对ZTD(rZTD)的策略的初步结果。可以预期,预测的ZTD或rZTD可以在较长的站间距离上辅助基于网络的实时运动(RTK)性能,最终使人们能够以经济有效的方式向人口稀少的区域提供精确的定位服务,例如昆士兰州。 ud ud这项研究首先研究了两种ZTD解决方案:1)后处理的IGS ZTD解决方案,以及2)近实时ZTD解决方案。可通过已为该项目部署的GNSS处理软件包(Bernese)获得接近实时的解决方案。分析了近实时Bernese解决方案的可预测性,并将其与作为基准解决方案的后处理IGS解决方案进行了比较。用15、30、45和60分钟的各种预测时间进行可预测性分析,以确定相对于及时性的误差。通过使用先前估计的ZTD作为当前时期的预测ZTD,可以确定(或表征)ZTD和相对ZTD的可预测性。 ud ud这项研究表明,ZTD和相对ZTD的预测误差本质上都是随机的; STD从几毫米增长到亚厘米,而预计的延迟间隔为15到60分钟。此外,RZTD的可预测性几乎不依赖于长达1000公里的测试基线的长度。最后,近实时Bernese解决方案与IGS解决方案的比较显示,预测精度略有下降。精度较低的NRT解决方案在50分钟的延迟内的STD误差为1cm。但是,观察到一些较大的误差,最大可达10厘米。 ud

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    Wang Charles; Feng Yanming;

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  • 年度 2009
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