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首页> 外文期刊>Geodetski Vestnik >DETERMINING REGIONAL IONOSPHERIC MODEL AND COMPARING WITH GLOBAL MODELS
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DETERMINING REGIONAL IONOSPHERIC MODEL AND COMPARING WITH GLOBAL MODELS

机译:确定区域电离层模型并与整体模型进行比较

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GNSS (Global Navigation Satellite System) signals pass through various layers of the atmosphere until reaching the receiver on the Earth. The ionosphere, one of these layers, is about 70 km to 1000 km above the Earth surface and constantly changes with the time of day, seasons, geographical location and solar explosions. The GNSS signals affected by the variable structure of the ionosphere are proportional to the total electron content (TEC). Determination of the TEC change is important for modelling of the ionosphere. In this study, totally 26 stations, including 14 TUSAGA-ACTIVE (CORS-TR) stations in Turkey and 12 IGS stations, were selected and evaluated. Bernese v5.2 GNSS software was used for evaluation. TEC values were calculated at intervals of two hours, one day per each month, from 2009 to 2015. TEC values, obtained from GNSS measurements using Single Layer Model, were compared with global ionosphere maps (GIMTEC) issued by the Center for Orbit Determination in Europe (CODE), the European Space Agency (ESA), the Jet Propulsion Laboratory (JPL), and TEC (IRI-2012 TEC) values obtained from international ionosphere reference program. The best approach to regional ionosphere model obtained as result of comparison was shown by CODE and ESA. Additionally TEC map was produced for the selected area as utilizing regional and global TEC values.
机译:GNSS(全球导航卫星系统)信号穿过大气的各个层,直到到达地球上的接收器。电离层是这些层之一,位于地球表面上方约70 km至1000 km,并且随着一天中的时间,季节,地理位置和太阳爆炸而不断变化。受电离层可变结构影响的GNSS信号与总电子含量(TEC)成正比。确定TEC的变化对于电离层的建模很重要。在这项研究中,共选择和评估了26个台站,包括土耳其的14个TUSAGA-ACTIVE(CORS-TR)台站和12个IGS台站。使用Bernese v5.2 GNSS软件进行评估。从2009年到2015年,每个月每天有两个小时的间隔计算TEC值。将使用单层模型从GNSS测量获得的TEC值与美国轨道测定中心发布的全球电离层图(GIMTEC)进行了比较。从国际电离层参考计划获得的欧洲(CODE),欧洲航天局(ESA),喷气推进实验室(JPL)和TEC(IRI-2012 TEC)值。 CODE和ESA显示了比较结果获得的最佳区域电离层模型方法。此外,还利用区域和全球TEC值为选定区域制作了TEC地图。

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