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An improved approach to model regional ionosphere and accelerate convergence for precise point positioning

  • Yibin Yao*
  • , Rui Zhang
  • , Weiwei Song
  • , Chuang Shi
  • , Yidong Lou
  • *Corresponding author for this work
  • Wuhan University

Research output: Contribution to journalArticlepeer-review

Abstract

Given the severe effects of the ionosphere on global navigation satellite system (GNSS) signals, single-frequency (SF) precise point positioning (PPP) users can only achieve decimeter-level positioning results. Ionosphere-free combinations can eliminate the majority of ionospheric delay, but increase observation noise and slow down dual-frequency (DF) PPP convergence. In this paper, we develop a regional ionosphere modeling and rapid convergence approach to improve SF PPP (SFPPP) accuracy and accelerate DF PPP (DFPPP) convergence speed. Instead of area model, ionospheric delay is modeled for each satellite to be used as a priori correction. With the ionospheric, wide-lane uncalibrated phase delay (UPD) and residuals satellite DCBs product, the wide-lane observations for DF users change to be high-precision pseudorange observations. The validation of a continuously operating reference station (CORS) network was analyzed. The experimental results confirm that the approach considerably improves the accuracy of SFPPP. For DF users, convergence time is substantially reduced.

Original languageEnglish
Pages (from-to)1406-1415
Number of pages10
JournalAdvances in Space Research
Volume52
Issue number8
DOIs
StatePublished - 15 Oct 2013
Externally publishedYes

Keywords

  • DCB
  • Ionosphere model
  • PPP
  • SF PPP
  • Wide-lane UPD

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