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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >Regional TEC model under quiet geomagnetic conditions and low-to-moderate solar activity based on CODE GIMs
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Regional TEC model under quiet geomagnetic conditions and low-to-moderate solar activity based on CODE GIMs

机译:区域TEC模型在安静的地磁条件下,基于代码GIM的低于适度的太阳能活动

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Global empirical total electron content (TEC) models based on TEC maps effectively describe the average behavior of the ionosphere. However, the accuracy of these global models for a certain region may not be ideal. Due to the number and distribution of the International GNSS Service (IGS) stations, the accuracy of TEC maps is geographically different. The modeling database derived from the global TEC maps with different accuracy is likely one of the main reasons that limits the accuracy of the new models. Moreover, many anomalies in the ionosphere are geographic or geomagnetic dependent, and as such the accuracy of global models can deteriorate if these anomalies are not fully incorporated into the modeling approach. For regional models built in small areas, these influences on modeling are immensely weakened. Thus, the regional TEC models may better reflect the temporal and spatial variations of TEC. In our previous work(Feng et al., 2016), a regional TEC model TECM-NEC is proposed for northeast China. However, this model is only directed against the typical region of Mid-latitude Summer Nighttime Anomaly (MSNA) occurrence, which is meaningless in other regions without MSNA. Following the technique of TECM-NEC model, this study proposes another regional empirical TEC model for other regions in mid-latitudes. Taking a small area BeiJing-TianJin-Tangshan (JJT) region (37.5 degrees-42.5 degrees N, 115 degrees-120 degrees E) in China as an example, a regional empirical TEC model (TECM-JJT) is proposed using the TEC grid data from January 1, 1999 to June 30, 2015 provided by the Center for Orbit Determination in Europe (CODE) under quiet geomagnetic conditions. The TECM-JJT model fits the input CODE TEC data with a bias of 0.11TECU and a root mean square error of 3.26TECU. Result shows that the regional model TECM-JJT is consistent with CODE TEC data and GPS-TEC data.
机译:基于TEC地图的全局经验总电子含量(TEC)模型有效地描述了电离层的平均行为。然而,某个区域的这些全球模型的准确性可能不是理想的。由于国际GNSS服务(IGS)站的数量和分配,TEC地图的准确性在地理上不同。从具有不同精度的全局TEC地图导出的建模数据库可能是限制新模型的准确性的主要原因之一。此外,电离层中的许多异常是地理或地磁依赖性,因此如果这些异常不完全纳入建模方法,因此全局模型的准确性会恶化。对于在小区域内置的区域模型,这些对建模的影响是非常削弱的。因此,区域TEC模型可以更好地反映TEC的时间和空间变化。在我们以前的工作中(Feng等人,2016年),一个区域TEC Model TECM-NEC是在中国东北提出的。然而,该模型仅针对中纬度夏季夜间异常(MSNA)发生的典型区域,在没有MSNA的其他地区在其他地区毫无意义。遵循TECM-NEC模型的技术,本研究提出了用于中纬度地区的其他地区的另一个区域实证TEC模型。以北京 - 天津 - 唐山(JJT)地区为例(以37.5度-22.5度N,115摄氏度-20度)为例,用TEC网格提出了一个区域实证TEC模型(TECM-JJT) 1999年1月1日至2015年6月30日的数据由欧洲(代码)在安静的地磁条件下提供的。 TECM-JJT模型适用于输入代码TEC数据,其偏差为0.11tecu和3.26tecu的根均方误差。结果表明,区域模型TECM-JJT与代码TEC数据和GPS-TEC数据一致。

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