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Use of Total Electron Content Maps for Analysis of Spatial- Temporal Structures of the Ionosphere

机译:使用总电子含量图分析电离层的时空结构

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摘要

The main aspects of a methodology for determining the total electron content (TEC) of the ionosphere from GPS observations and the principles of using two-frequency measurements of satellite signal delays in navigation systems are presented. The method developed and used at the Western Department of Pushkov Institute of Terrestrial Magnetism, Ionosphere, and Radio Waves Propagation, RAS enables to determine the absolute values of the TEC and monitor the diurnal behavior of this quantity for individual monitoring stations. The methodology for obtaining information on the spatial distribution of TEC maps of the ionosphere on the basis of an algorithm for multi-station processing of GPS observations. Using a set of algorithms and programs, regional TEC maps with a spatial resolution of 1° and a time resolution of 15 min- 1 h are regularly drawn. This precision allows using TEC maps for studying the structure and dynamics of the ionosphere during different geophysical events. The results of studies of the response of the ionosphere to the solar eclipse on November 3, 2005 and the geomagnetic storms on January 22, 2012.
机译:提出了从GPS观测确定电离层总电子含量(TEC)的方法论的主要方面,以及在导航系统中使用卫星信号延迟的两频测量的原理。 RAS是由普希科夫地球磁场,电离层和无线电波传播西部研究所开发和使用的,RAS可以确定TEC的绝对值,并可以为各个监测站监测该量的昼夜变化。基于对GPS观测值进行多站处理的算法,获取有关电离层TEC图空间分布信息的方法。使用一组算法和程序,定期绘制空间分辨率为1°,时间分辨率为15 min-1 h的区域TEC图。这种精度允许使用TEC映射来研究不同地球物理事件期间电离层的结构和动力学。 2005年11月3日电离层对日食和2012年1月22日对地磁暴的响应研究结果。

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