Journal of Xidian University ›› 2021, Vol. 48 ›› Issue (4): 50-56.doi: 10.19665/j.issn1001-2400.2021.04.007
• Information and Communications Engineering & Electronic Science and Technology • Previous Articles Next Articles
DING Shuo1,2(),YANG Haiyan1,2,3(),YANG Xuhai1,2,3(),ZHANG Zhe1,2,3(),ZHAO Kunjuan1,2()
Received:
2020-02-03
Online:
2021-08-30
Published:
2021-08-31
Contact:
Haiyan YANG
E-mail:dingshuo@mails.ucas.ac.cn;yanghy@ntsc.ac.cn;yyang@ntsc.ac.cn;zhangzhe@ntsc.ac.cn;zhaokunjuan@ntsc.ac.cn
CLC Number:
DING Shuo,YANG Haiyan,YANG Xuhai,ZHANG Zhe,ZHAO Kunjuan. Influence of the second-order ionospheric delay on GPS PPP time transfer[J].Journal of Xidian University, 2021, 48(4): 50-56.
[1] | GERARD P, AURELIE H, MERCIER F, et al. The Time Stability of PPP Links for TAI[C]//Proceedings of the Frequency Control & the European Frequency & Time Forum (FCS) Proceedings.Piscataway:IEEE, 2011:1-5. |
[2] |
PETIT G, KANJ A, LOYER S, et al. 1×10-16 Frequency Transfer by GPS PPP with Integer Ambiguity Resolution[J]. Metrologia, 2015, 52(2):301-309.
doi: 10.1088/0026-1394/52/2/301 |
[3] |
GE Y, DAI P, QIN W, et al. Performance of Multi-GNSS Precise Point Positioning Time and Frequency Transfer with Clock Modeling[J]. Remote Sensing, 2019, 11(3):347.
doi: 10.3390/rs11030347 |
[4] |
DEFRAIGNE P, BRUYNINX C. On the Link Between GPS Pseudorange Noise and Day-Boundary Discontinuities in Geodetic Time Transfer Solutions[J]. GPS Solutions, 2007, 11(4):239-249.
doi: 10.1007/s10291-007-0054-z |
[5] |
ZHANG P, TU R, ZHANG R, et al. Combining GPS,BeiDou,and Galileo Satellite Systems for Time and Frequency Transfer Based on Carrier Phase Observations[J]. Remote Sensing, 2018, 10(2):324.
doi: 10.3390/rs10020324 |
[6] |
GE Y, ZHOU F, DAI P, et al. Precise Point Positioning Time Transfer with Multi-GNSS Single-frequency Observations[J]. Measurement, 2019, 146:628-642.
doi: 10.1016/j.measurement.2019.07.009 |
[7] |
CAI C, LIU G, YI Z, CUI X, et al. Effect Analysis of Higher-Order Ionospheric Corrections on Quad-Constellation GNSS PPP[J]. Measurement Science and Technology, 2019, 30(2):24001.
doi: 10.1088/1361-6501/aaf555 |
[8] |
BANVILLE S, SIERADZKI R, HOQUE M, et al. On the Estimation of Higher-Order Ionospheric Effects in Precise Point Positioning[J]. GPS Solutions, 2017, 21(4):1817-1828.
doi: 10.1007/s10291-017-0655-0 |
[9] |
ZHAO Q, WANG Y T, GU S, et al. Refining Ionospheric Delay Modeling for Undifferenced and Uncombined GNSS Data Processing[J]. Journal of Geodesy, 2019, 93(4):545-560.
doi: 10.1007/s00190-018-1180-9 |
[10] |
ZHANG S, FANG L, WANG G, et al. The Impact of Second-Order Ionospheric Delays on The ZWD Estimation with GPS and BDS Measurements[J]. GPS Solutions, 2020, 24(2):1-11.
doi: 10.1007/s10291-019-0913-4 |
[11] |
ZHANG Z, GUO F, ZHANG X. The Effects of Higher-Order Ionospheric Terms on GPS Tropospheric Delay and Gradient Estimates[J]. Remote Sensing, 2018, 10(10):1561.
doi: 10.3390/rs10101561 |
[12] | 张绍成, 王鑫哲, 黄龙强, 等. 电离层二阶项延迟对GPS动态精密单点定位的影响[J]. 测绘学报, 2018, 47(0Z1):45-53. |
ZHANG Shaocheng, WANG Xinzhe, HUANG Longqiang, et al. Impact of Second Order Ionosphere Delays for GPS Kinematic Precise Point Positioning Applications[J]. Acta Geodaetica et Cartographica Sinica, 2018, 47(0Z1):45-53. | |
[13] | 张小红, 任晓东, 郭斐. 顾及电离层延迟高阶项改正的精密单点定位[J]. 武汉大学学报(信息科学版), 2013, 38(8):883-887. |
ZHANG Xiaohong, REN Xiaodong, GUO Fei. Influence of Higher-order Ionospheric Delay Correction on Static Precise Point Positioning[J]. Geomatics and Information Science of Wuhan University, 2013, 38(8):883-887. | |
[14] | HADAS T, KRYPIAK-GREGORCZYK A, HERNANDEZ M, et al. Impact and Implementation of Higher-order Ionospheric Effects on Precise GNSS Applications[J]. Journal of Geophysical Research B:Solid Earth, 2017, 122(11):9420-9436. |
[15] | 匡翠林, 金蕾. 精密单点定位的高阶电离层误差改正研究[J]. 武汉大学学报(信息科学版), 2013, 38(8):888-891. |
KUANG Cuilin, JIN Lei. Higher-Order Ionospheric Error Correction for Precise Point Positioning[J]. Geomatics and Information Science of Wuhan University, 2013, 38(8):888-891. | |
[16] | JOHNSTON G, RIDDELL A, HAUSLER G. The International GNSS Service[M]. Cham: Springer International Publishing, 2017:967-982. |
[17] |
PIREAUX S, DEFRAIGNE P, WAUTERS L, et al. Influence of Ionospheric Perturbations in GPS Time and Frequency Transfer[J]. Advances in Space Research, 2010, 45(9):1101-1112.
doi: 10.1016/j.asr.2009.07.011 |
[18] |
PIREAUX S, DEFRAIGNE P, WAUTERS L, et al. Higher-Order Ionospheric Effects in GPS Time and Frequency Transfer[J]. GPS Solutions, 2010, 14(3):267-277.
doi: 10.1007/s10291-009-0152-1 |
[19] | BOEHM J, HERNANDEZ M, HUGENTOBLER U, et al. Chapter 9:Models for Atmospheric Propagation Delays,within the IERS Technical Note No.36[M]. Frankfurt:Bundesamt Fuer Kartographie Und Geodaesie, 2010:132-150. |
[20] |
ERWAN T, CHRISTOPHER C, CIARÁN D, et al. International Geomagnetic Reference Field:the 12th generation[J]. Earth,Planets and Space, 2015, 67(1):1-19.
doi: 10.1186/s40623-014-0143-5 |
[21] | 李美玲, 胡耀垓, 周晨, 等. 支持向量机用于电离层foF2的短期区域预报[J]. 西安电子科技大学学报, 2015, 42(5):147-153. |
LI Meiling, HU Yaogai, ZHOU Chen, et al. On the Short-Term Regional Prediction of foF2 Based on the Support Vector Machine[J]. Journal of Xidian University, 2015, 42(5):147-153. | |
[22] |
KASHCHEYEV A, MIGOYA-ORUÉY, AMORYMAZAUDIER C, et al. Multivariable Comprehensive Analysis of Two Great Geomagnetic Storms of 2015[J]. Journal of Geophysical Research:Space Physics, 2018, 123:5000-5018.
doi: 10.1029/2017JA024900 |
[23] | 孙文杰, 宁百齐, 赵必强. 2015年3月磁暴期间中国中低纬地区电离层变化分析[J]. 地球物理学报, 2017, 60(1):1-10. |
SUN Wenjie, NING Baiqi, ZHAO Biqiang. Analysis of Ionospheric Features in Middle and Low Latitude Region of China During the Geomagnetic Storm in March 2015[J]. Chinese Journal of Geophysics, 2017, 60(1):1-10. | |
[24] | ZHANG P, TU R, GAO Y, et al. Day-Boundary Discontinuity in GPS Carrier-Phase Time Transfer Using a Geodetic Data Solution Strategy[J]. Journal of Surveying Engineering, 2019, 145(1):40180131. |
[25] | 高平, 李小平, 谢楷. GPS导航系统再入黑障现象地面再现实验[J]. 西安电子科技大学学报, 2016, 43(2):77-82. |
GAO Ping, LI Xiaoping, XIE Kai. Experiment on Reproducing the Continuous Blackout of the GPS System[J]. Journal of Xidian University, 2016, 43(2):77-82. |
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