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An overview on GNSS carrier-phase time transfer research 被引量:4

An overview on GNSS carrier-phase time transfer research
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摘要 Global navigation satellite system(GNSS)carrier phase observations are two orders of higher accuracy than pseudo-range observations,and they are less affected by multipath besides.As a result,the time transfer accuracy can reach 0.1 ns,and the frequency transfer stability can reach 1×10^-15 with carrier phase(CP)method,therefore CP method is considered the most accurate and promising time transfer technology.The focus of this paper is to present a comprehensive summary of CP method,with specific attention directed toward day-boundary clock jump,ambiguity resolution(AR),multi-system time transfer and real-time time transfer.Day-boundary clock jump is essentially caused by pseudo-range noise.Several approaches were proposed to solve the problem,such as continuously processing strategy,sliding batch and bidirectional filtering methods which were compared in this study.Additionally,researches on AR in CP method were introduced.Many scholars attempted to fix the single-difference ambiguities to improve the time transfer result,however,owing to the uncalibrated phase delay(UPD)was not considered,the current studies on AR in CP method were still immature.Moreover,because four GNSS systems could be used for time-transfer currently,which was helpful to increase the accuracy and reliability,the researches on multi-system time transfer were reviewed.What’s more,real-time time transfer attracted more attention nowadays,the preliminary research results were presented. Global navigation satellite system(GNSS) carrier phase observations are two orders of higher accuracy than pseudo-range observations, and they are less affected by multipath besides. As a result, the time transfer accuracy can reach 0.1 ns, and the frequency transfer stability can reach 1×10-15 with carrier phase(CP) method, therefore CP method is considered the most accurate and promising time transfer technology. The focus of this paper is to present a comprehensive summary of CP method,with specific attention directed toward day-boundary clock jump, ambiguity resolution(AR), multi-system time transfer and real-time time transfer. Day-boundary clock jump is essentially caused by pseudo-range noise. Several approaches were proposed to solve the problem, such as continuously processing strategy, sliding batch and bidirectional filtering methods which were compared in this study. Additionally, researches on AR in CP method were introduced. Many scholars attempted to fix the single-difference ambiguities to improve the time transfer result, however, owing to the uncalibrated phase delay(UPD) was not considered, the current studies on AR in CP method were still immature. Moreover, because four GNSS systems could be used for time-transfer currently, which was helpful to increase the accuracy and reliability, the researches on multi-system time transfer were reviewed. What’s more, real-time time transfer attracted more attention nowadays, the preliminary research results were presented.
出处 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2020年第4期589-596,共8页 中国科学(技术科学英文版)
基金 supported in part by the National Key Research and Development Program of China(Grant No.2016YFB0800401) in part by the National Natural Science Foundation of China(Grants Nos.61621003,61532020&11472290)。
关键词 carrier phase(CP) TIME TRANSFER day-boundary clock jump AMBIGUITY resolution(AR) MULTI-SYSTEM TIME TRANSFER real-time TIME TRANSFER carrier phase(CP) time transfer day-boundary clock jump ambiguity resolution(AR) multi-system time transfer real-time time transfer
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  • 1[6]Chadsey,H..A comparison of several GPS data reduction methods,Proc.25th PTTI meeting,1993:317
  • 2[7]Consultative Committee for Time and Frequency,Report of the 17th meeting,2006,http://www.bipm.org/utils/common/pdf/CCTF17.pdf.
  • 3[8]Dach R.,L.G.Bernier,G.Dudle,et al.Geodetic Frequency Transfer-recent developments in the AIUB-ME-TAS collaboration,IN Proc.19th EFTF 2005.
  • 4[9]Defraigne P.,N.Guyennon,Bruyninx.PPP and Phase-only GPS time and frequency transfer,IN Proc.EFTF 2007.
  • 5[10]Defraigne P.,C.Bruyninx.On the link between GPS pseudorange noise and day-boundary discontinuities in geodetic time transfer solutions,GPS Solutions,2007,in press.
  • 6[11]Dow J.M.,R.E.Neilan,G.Gendt.The International GPS Service (IGS):Celebrating the 10th Anniversary and Looking to the Next Decade.Adv.Space Res.2005,36(3):320 ~ 326.doi:10.1016/j.asr.2005.05.125
  • 7[12]Gendt G.,Th.Nischan,First validation of new IGS products generated with absolute antenna models,IGS Workshop,2006.
  • 8[13]Gotoh T.Improvement GPS time link in Asia with All in View.IN.Proc.PTTI 2005
  • 9[14]Jiang Z.One Year Comparison of USNO-PTB TW Ku and X band Time Links.TM142 of BIPM,Jan,2006
  • 10[15]Jiang Z.,R.Dach,G.Petit,et al.Comparison and combination of TAI time links with continuous GPS carrier phase results,IN Proc.EFTF 2006.

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