首页> 外文期刊>Radiophysics and quantum electronics >VARIABILITY OF THE TROPOSPHERIC-DELAY TEMPORAL STRUCTURE FUNCTION OF RADIO SIGNALS FROM THE GLOBAL NAVIGATION SATELLITE SYSTEMS VERSUS TROPOSPHERIC SURFACE LAYER PARAMETERS
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VARIABILITY OF THE TROPOSPHERIC-DELAY TEMPORAL STRUCTURE FUNCTION OF RADIO SIGNALS FROM THE GLOBAL NAVIGATION SATELLITE SYSTEMS VERSUS TROPOSPHERIC SURFACE LAYER PARAMETERS

机译:来自全球导航卫星系统的无线电信号的对流延迟时间结构功能与对流层表面层参数的可变性

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摘要

We present the results of a four-year (2009-2012) study of the decimeter radio wave propagation using signals from the global navigation satellite system (GNSS) and simultaneous measurements of the tropospheric surface layer parameters in the city of Kazan. Inter- and intra-annual variabilities of the temporal structure functions of the zenith tropospheric delay (ZTD) of decimeter radio waves are analyzed. It has been found that the contribution of irregularities with time scales of up to 24 h to the ZTD fluctuation variance varies, depending on the surface weather parameters ( temperature and pressure). Correlation coefficient between the approximation exponents of the ZTD temporal structure function of decimeter radio waves and surface temperature reaches 0.77 for fluctuations with time scales of up to 8 h. It has been established that synoptic processes and the underlying surface affect the formation of mesoscale fluctuations on the phase path of radio signals from the navigation satellite systems.
机译:我们使用来自全球导航卫星系统(GNSS)的信号和喀山市的对流层表面层参数的信号同时测量,提出了四年(2009 - 2012)研究的二年级无线电波传播的结果。分析了分析小测量电波的Zenith对流层延迟(ZTD)的时间结构函数的年间变形性。已经发现,根据表面天气参数(温度和压力),ZTD波动方差最多24小时的时间尺度的造成贡献变化。排比仪无线电波的ZTD时间结构函数的近似指数与表面温度之间的相关系数达到0.77,对于高达8小时的时间尺度的波动。已经确定,概要过程和底面表面影响了来自导航卫星系统的无线电信号的相位路径上的Messcale波动的形成。

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