期刊文献+

基于全球卫星导航系统观测网的全球总电子含量快速反演方法 被引量:1

A Fast Totel Electron Content Derivation Based on GNSS Observation
在线阅读 下载PDF
导出
摘要 将全球按照地理经纬度进行网格划分,每网格选取一个接收机,基于全球卫星导航系统(GNSS)观测网的全球定位系统(GPS)双频观测数据,在电离层薄层假设条件下,提出了一种基于球谐函数拟合的高时间分辨率总电子含量(TEC)快速反演方法.利用2006年四季中16个地磁平静日的GPS双频观测数据,针对15种不同的网格选站情况考察其TEC的反演效果与解算时间.结果表明,当网格选站间隔小于15°×30°(纬度×经度)时,数据拟合度约为2TECU,并都能较好地反演TEC.综合考虑穿刺点分布与解算时间,在10°×20°(纬度×经度)选站条件下,约在3min内即可反演出有效的TEC、卫星硬件偏差和接收机硬件偏差,从而提高了反演速度,10°×20°(纬度×经度)选站的快速反演TEC能够为全球电离层TEC现报提供一种有效方法. This paper proposes to divide the globe into meshes and select one GNSS receiver from each mesh.With the observation of these receivers,it develops a TEC derivation algorithm based on the spherical harmonic function.For different mesh sizes from 2.5°×2.5°(latitude×longitude)to 30°×30°(latitude×longitude),the performance is examined by applying it to the data selected from 16 geomagnetically quiet days in four seasons in 2006.The result shows that the data can be generally well fitted,with the goodness of fit being about 2TECU.By comparing the derived TEC and instrumental biases with those of CODE(Center for Orbit Determination in Europe),it can be found that the algorithm can give reasonable TEC and biases for those meshes smaller than 15°×30°(latitude×longitude).Considering the Ionospheric puncture point distribution and calculating time,it can be concluded that the mesh of 10°×20°(latitude×longitude)is appropriate to derive TEC and instrumental biases rapidly.This paper provides a fast and effective method for nowcasting the global ionospheric TEC.
作者 王晓岚 马冠一 万庆涛 李婧华 范江涛 张杰 WANG Xiaolan MA Cruanyi WAN Qingtao LI Jinghua FAN Jiangtao ZHANG Jie(National Astronomical Observatories, Chinese Academy of Sciences, Beijing 100012, China University of Chinese Academy of Sciences, Beijing 100049, China)
出处 《上海交通大学学报》 EI CAS CSCD 北大核心 2017年第2期214-223,共10页 Journal of Shanghai Jiaotong University
基金 国家自然科学基金资助项目(11473045 11403045 11503040)
关键词 全球定位系统 总电子含量 硬件偏差 球谐模型 快速反演 global positioning system(GPS) totel electron content(TEC) instrumental bias spherical harmonic model fast TEC derivation
  • 相关文献

参考文献1

二级参考文献22

  • 1Leteinger R,Hartmann G K,Lohmar F J,et al.Electron content measurements with geodetic Doppler receivers[J].Radio Science,1984,19(3):789-797.
  • 2Titheridge J E.Determination of ionospheric electron content from the Faraday rotation of geostationary satellite signals[J].Planet.Space Sci,1972,20(3).
  • 3Coco D.GPS-satellites of opportunity for ionospheric monitoring[J].GPS world,1991,10:47-50.
  • 4Jakowski N.TEC monitoring by using satellite positioning systems.In Modern Ionospheric Science[J].EGS KatlenburgLindau,FRG 1996:371-390.
  • 5SardFon E,Rius A,Zarraoa N.Estimation of the transmitter and receiver di7erential biases on the ionospheric total electron content from global positioning system observations[J].Radio Science,1994,29:577-586.
  • 6Mannucci A J,Wilson B D,Yuan D N,et al.A global mapping technique for GPS-derived ionospheric total electron content measurements[J].Radio Science,1998,33:565-582.
  • 7Mannucci A J,Iijima B A,Sparks L,et al.Assessment of global TEC mapping using a three-dimensional electron density model[J].J.Atmos.Sol.Terr.Phys.,1999,61:1227-1236.
  • 8Orús R,Hernández-Pajares M,Juan J M,et al.Improvement of global ionospheric VTEC maps by using kriging interpolation technique[J].J.Atmos.Sol.Terr.Phys.,2005,67:1598-1609.
  • 9Hernández-Pajares M,Juan J M,Sanz J.New approaches in global ionospheric determination using ground GPS data[J].J.Atmos and Sol.Terr.Phys.,1999,61:1237-1247.
  • 10Feltens J,Schaer S.IGS products for the ionosphere.In:Proceedings of the IGS Analysis Center Workshop,ESA/ESOC Darmstadt[J].Germany,1998,225-232.

共引文献50

同被引文献2

引证文献1

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部