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Correction of Single Frequency Altimeter Measurements for Ionosphere Delay

机译:电离层延迟的单频测高仪测量的校正

摘要

This study is a preliminary analysis of the accuracy of various ionosphere models to correct single frequency altimeter height measurements for Ionospheric path delay. In particular, research focused on adjusting empirical and parameterized ionosphere models in the parameterized real-time ionospheric specification model (PRISM) 1.2 using total electron content (TEC) data from the global positioning system (GPS). The types of GPS data used to adjust PRISM included GPS line-of-sight (LOS) TEC data mapped to the vertical, and a grid of GPS derived TEC data in a sun-fixed longitude frame. The adjusted PRISM TEC values, as well as predictions by IRI-90, a climatotogical model, were compared to TOPEX/Poseidon (T/P) TEC measurements from the dual-frequency altimeter for a number of T/P tracks. When adjusted with GPS LOS data, the PRISM empirical model predicted TEC over 24 1 h data sets for a given local time to with in a global error of 8.60 TECU rms during a midnight centered ionosphere and 9.74 TECU rms during a noon centered ionosphere. Using GPS derived sun-fixed TEC data, the PRISM parameterized model predicted TEC within an error of 8.47 TECU rms centered at midnight and 12.83 TECU rms centered at noon. From these best results, it is clear that the proposed requirement of 3-4 TECU global rms for TOPEX/Poseidon Follow-On will be very difficult to meet, even with a substantial increase in the number of GPS ground stations, with any realizable combination of the aforementioned models or data assimilation schemes.
机译:这项研究是对各种电离层模型的准确性进行的初步分析,以校正电离层路径延迟的单频高度计高度测量。特别是,研究的重点是使用来自全球定位系统(GPS)的总电子含量(TEC)数据,在参数化的实时电离层规范模型(PRISM)1.2中调整经验和参数化的电离层模型。用于调整PRISM的GPS数据类型包括映射到垂直线的GPS视线(LOS)TEC数据,以及在太阳固定的经度帧中GPS导出的TEC数据的网格。将调整后的PRISM TEC值以及IRI-90(一种气候学模型)的预测与双频测高仪针对多个T / P轨迹的TOPEX / Poseidon(T / P)TEC测量结果进行比较。当使用GPS LOS数据进行调整时,PRISM经验模型将在给定的本地时间到24小时的1 h数据集上预测TEC,午夜中心电离层的全球误差为8.60 TECU rms,午夜中心电离层的全局误差为9.74 TECU rms。使用GPS导出的太阳固定TEC数据,PRISM参数化模型可预测TEC,误差以午夜为中心的8.47 TECU rms和中午为12.83 TECU rms。从这些最佳结果来看,很明显,即使GPS地面站的数量大大增加,并且采用任何可实现的组合,对于TOPEX / Poseidon后续跟踪系统,建议的3-4 TECU全球有效值的要求也将很难满足。前述模型或数据同化方案。

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