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The Best Number of IGS Stations by Grouping Network for Solving Total Zenith Delay

机译:通过分组网络来解决总Zenith延迟的最佳数量的IGS站

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Short-term adverse weather conditions have a direct impact on geological disasters. However, the data source of high-precision weather on real time can be provided by GPS technology. At the same time, the high-precision and real-time weather forecast can provide important and basic information for geological disasters monitoring, forecasting and prevention. However, the precision of the total zenith delay in troposphere directly affects the estimating precision of the water vapor contents over stations, which affects the accuracy of real-time weather forecast. In this paper, the total zenith delay of GPS observational station is solved respectively by GPS data on GPS observational station grouped with different IGS stations using high-precision software-GAMIT/GLOBK developed by the Massachusetts Institute of Technology. The solving results are comparatively analyzed to draw: the best number of IGS tracking stations by grouping network for improving the precision of the total zenith delay in troposphere is 3. It is of great realizable significance.
机译:短期恶劣天气条件直接影响地质灾害。然而,GPS技术可以提供实时高精度天气的数据源。与此同时,高精度和实时天气预报可以为地质灾害监测,预测和预防提供重要和基本信息。然而,对流层总延迟的精度直接影响水蒸气含量的估算,这影响了实时天气预报的准确性。在本文中,通过使用Massachusetts技术研究所开发的高精度软件 - Gamit / Globk对不同IGS站进行的GPS观测站对GPS观测站的GPS数据进行了解决的全部天顶延迟。求解结果比较分析到绘制:通过分组网络来提高对流层延迟总延迟的精度来提高最佳数量的IGS跟踪站。它具有巨大可实现的意义。

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