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Regional 3-D ionospheric electron density specification on the basis of data assimilation of ground-based GNSS and radio occultation data

机译:基于地面GNSS数据同化和无线电掩星数据的区域3-D电离层电子密度规范

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In this paper, a regional 3-D ionospheric electron density specification over China and adjacent areas (70E–140E in longitude, 15N–55N in latitude, and 100–900 km in altitude) is developed on the basis of data assimilation technique. The International Reference Ionosphere (IRI) is used as a background model, and a three-dimensional variational technique is used to assimilate both the ground-based Global Navigation Satellite System (GNSS) observations from the Crustal Movement Observation Network of China (CMONOC) and International GNSS Service (IGS) and the ionospheric radio occultation (RO) data from FORMOSAT-3/COSMIC (F3/C) satellites. The regional 3-D gridded ionospheric electron densities can be generated with temporal resolution of 5 min in universal time, horizontal resolution of 2° × 2° in latitude and longitude, and vertical resolution of 20 km between 100 and 500 km and 50 km between 500 and 900 km. The data assimilation results are validated through extensive comparison with several sources of electron density information, including (1) ionospheric total electron content (TEC); (2) Abel-retrieved F3/C electron density profiles (EDPs); (3) ionosonde foF2 and bottomside EDPs; and (4) the Utah State University Global Assimilation of Ionospheric Measurements (USU-GAIM) under both geomagnetic quiet and disturbed conditions. The validation results show that the data assimilation procedure pushes the climatological IRI model toward the observation, and a general accuracy improvement of 15–30% can be expected. The comparisons also indicate that the data assimilation results are more close to the Center for Orbit Determination of Europe (CODE) TEC and Madrigal TEC products than USU-GAIM. These initial results might demonstrate the effectiveness of the data assimilation technique in improving specification of local ionospheric morphology.
机译:本文基于数据同化技术,制定了中国及邻近地区(经度70E-140E,纬度15N-55N和海拔100-900 km)的区域3-D电离层电子密度规范。使用国际参考电离层(IRI)作为背景模型,并使用三维变分技术来吸收来自中国地壳运动观测网络(CMONOC)的地面全球导航卫星系统(GNSS)观测和国际GNSS服务(IGS)和来自FORMOSAT-3 / COSMIC(F3 / C)卫星的电离层无线电掩星(RO)数据。可以生成以下区域3-D网格电离层电子密度:通用时间的时间分辨率为5分钟,纬度和经度的水平分辨率为2°×2°,以及100至500 km和20 km之间的垂直分辨率为20 km 500和900公里。通过与多种电子密度信息来源的广泛比较,验证了数据同化结果,包括:(1)电离层总电子含量(TEC); (2)Abel检索的F3 / C电子密度分布图(EDP); (3)离子探空仪foF2和底侧EDP; (4)地磁安静和扰动条件下的犹他州立大学全球电离层测量同化(USU-GAIM)。验证结果表明,数据同化程序将气候IRI模型推向了观测,并且可以将总体精度提高15-30%。比较还表明,数据同化结果比USU-GAIM更接近欧洲轨道确定中心(CODE)TEC和Madrigal TEC产品。这些初步结果可能证明数据同化技术在改善局部电离层形态学规范方面的有效性。

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