期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
基于GNSS TEC的电离层模型IRI-Plas 2020与IRI-2020的全球精度评估 被引量:1
1
作者 金俐君 陈必焰 +1 位作者 王晓嫚 吴定一 《空间科学学报》 CAS CSCD 北大核心 2024年第6期1031-1046,共16页
在信号传播与接收的过程中对电离层延迟进行改正可以提升卫星导航定位的精度,电离层经验模型,如国际参考电离层(International Reference Ionosphere, IRI)模型和IRI-Plas (IRI Extended to Plasmasphere)模型在估计电离层参数时得到广... 在信号传播与接收的过程中对电离层延迟进行改正可以提升卫星导航定位的精度,电离层经验模型,如国际参考电离层(International Reference Ionosphere, IRI)模型和IRI-Plas (IRI Extended to Plasmasphere)模型在估计电离层参数时得到广泛应用.基于太阳活动低年2021年全球135个GNSS站的双频观测数据,提取了垂直总电子含量(VTEC)和倾斜总电子含量(STEC)作为评价基准,评估了同化GIM TEC数据的IRI-Plas2020模型、未同化外部TEC的IRI-Plas 2020模型和IRI-2020模型.针对不同模型与GNSS观测值之间的精度差异做了详细评估与分析,分析了电离层纬度变化、日变化与季节变化规律,探究了两种模型在不同地磁情况下的精度表现.结果表明,两种模型均能很好地表现电离层特征,其中同化GIM TEC的IRI-Plas模型值精度最高,由于模型计算高度范围的限制,导致IRI模型值偏低,未同化外部TEC的IRI-Plas模型值偏高.同时,两种模型的误差都表现出纬度变化,通常随着纬度的增加而下降,这些变化还显示出季节性趋势. 展开更多
关键词 电离层 全球导航卫星系统 倾斜总电子含量 iri-plas 2020模型 IRI-2020模型
在线阅读 下载PDF
Online computation of International Reference Ionosphere Extended to Plasmasphere(IRI-Plas) model for space weather 被引量:3
2
作者 Umut Sezen T.L.Gulyaeva Feza Arikan 《Geodesy and Geodynamics》 2018年第5期347-357,共11页
Ionosphere is the most challenging part of Space Weather with its spatio-temporal variability and dispersive nature. Ionospheric models are very important in reducing positioning error in GNSS system.International Ref... Ionosphere is the most challenging part of Space Weather with its spatio-temporal variability and dispersive nature. Ionospheric models are very important in reducing positioning error in GNSS system.International Reference Ionosphere(IRI) is an empirical, deterministic and climatic model of ionosphere up to 2000 km in height. Recently, IRI Extended to Plasmasphere(IRI-Plas) model has been developed to extend the interest region of IRI to the GPS orbital height of 20,000 km. Both IRI and IRI-Plas provide ionospheric parameters such as electron density, electron and ion temperatures according to their height profiles. In order to update the model to current ionospheric conditions, IRI-Plas can input F2 layer critical frequency(foF2), maximum ionization height(hmF2), and also Total Electron Content(TEC).Online IRI-Plas is developed for the ionospheric community to run multiple tasks at various locations,dates and times with optional foF2, hmF2 and TEC inputs in a user-friendly manner. In this paper, we are going to present the capabilities of the Online IRI-Plas service and provide some comparisons between IRI-Plas outputs and ionosonde measurements. The comparison between online IRI-Plas foF2 outputs and ionosonde foF2 measurements indicates that the model with TEC input can significantly improve the representation of the current ionospheric state, which is very successful especially in the geomagnetically disturbed days. 展开更多
关键词 IONOSPHERE Space weather iri-plas GPS TEC IONOLAB
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部