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Features of backscatter ionospheric sounding as studied with a chirp ionosonde

机译:chi离子探空仪研究的背向散射电离层探测特征

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We present the results of the studies of backscatter ionospheric sounding (BS) on the basis of a multipurpose chirp ionosonde developed in ISTP SB RAS. We analyze BS experimental data obtained during different seasons from 2005 to 2009. The accumulated dataset allows us to investigate features of BS signal propagation in various heliogeophysical conditions. To analyze and interpret BS signals on ionograms, we use the results of modeling of characteristics for chirp signals in the backscatter and oblique ionospheric sounding under a waveguide approach. We have revealed the most characteristic types of ionograms and have established conditions of appearance of a given type depending on the time of day, season, sounding direction, and medium conditions. In winter, spring, and autumn, the prevailing types of ionograms are those with BS signals corresponding to the propagation mode through reflection from the F layer. Signals reflected by E or Es layers are recorded during summer periods. At the same time, frequencies of the received signals are sufficiently large, and sometimes there are no reflections from the F layer.
机译:我们介绍了在ISTP SB RAS中开发的多用途chi离子探空仪基础上的反向散射电离层探测(BS)研究的结果。我们分析了从2005年到2009年不同季节获得的BS实验数据。积累的数据集使我们能够研究BS在各种日光地球物理条件下传播的特征。为了分析和解释电离图上的BS信号,我们使用波导方法在反向散射和斜向电离层测深中chi信号的特征建模结果。我们已经揭示了离子图的最具特征性的类型,并根据一天中的时间,季节,发声方向和中等条件建立了给定类型的外观条件。在冬季,春季和秋季,主要的电离图类型是带有BS信号的电离图,这些信号对应于通过F层反射产生的传播模式。在夏季,会记录由E层或Es层反射的信号。同时,接收信号的频率足够大,并且有时没有来自F层的反射。

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