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Regiomontan: A Regional High Precision Ionosphere Delay Model and Its Application in Precise Point Positioning

机译:Regiomontan:区域高精度电离层延迟模型及其在精确点定位中的应用

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摘要

Propagation delays of GNSS signals caused by the ionosphere can range up to several meters in zenith direction and need to be corrected. Geodetic receivers observing at two or more frequencies allow the mitigation of the ionospheric effects by forming linear combinations. However, single frequency users depend on external information. The ionosphere delay model Regiomontan developed at TU Wien is a regional ionospheric delay model providing high accuracy information with a latency of only a few hours. The model is based on dual-frequency phase observations of a regional network operated by EPOSA (Echtzeit Positionierung Austria) and partners. The corrections cover a geographical extent for receiver positions within Austria and are provided in the standardized IONEX format. The performance of Regiomontan as well as its application in Precise Point Positioning (PPP) were tested with our in-house PPP software raPPPid using the so-called uncombined model with ionospheric constraint. Various tests, e.g., analyzing the coordinate convergence behavior or the difference between estimated and modeled ionospheric delay, proving the high level of accuracy provided with Regiomontan. We conclude that Regiomontan performs at a similar level of accuracy as IGS final TEC maps, but with explicitly reduced latency.
机译:由电离层引起的GNSS信号传播延迟在天顶方向上可能高达几米,需要进行校正。以两个或多个频率观测的大地测量接收器通过形成线性组合,可以减轻电离层效应。但是,单频用户依赖于外部信息。 TU Wien开发的电离层延迟模型Regiomontan是一种区域电离层延迟模型,可提供仅几小时的延迟的高精度信息。该模型基于由EPOSA(Echtzeit Positionierung Austria)和合作伙伴运营的区域网络的双频相位观测。这些更正涵盖了奥地利境内接收机位置的地理范围,并以标准IONEX格式提供。使用我们内部的PPP软件raPPPid,使用具有电离层约束的非组合模型,对Regiomontan的性能及其在精确点定位(PPP)中的应用进行了测试。各种测试,例如分析坐标收敛行为或估算的电离层延迟与建模的电离层延迟之间的差异,证明了Regiomontan具有很高的准确性。我们得出的结论是,Regiomontan的精度与IGS最终TEC贴图相似,但是延迟显着减少。

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