GLONASS RTK Positioning Enhanced by Combining GPS/BDS Signals

Due to inter-frequency phase bias (IFB), GLONASS is ignored when discussing real-time kinematic (RTK) positioning. Although this problem has been effectively solved, defects still exist when the number of tracked satellites is small or when single-frequency observations are processed. This contribution proposes an enhanced method that can effectively overcome these existing shortcomings by combining GLONASS and GPS observations. By using an enhanced algorithm, the performance of estimated IFB rate is more stable and reliable when there are few tracked satellites, and estimating the IFB rate with a single frequency is available. In this contribution, the GLONASS dual-frequency RTK ambiguity fixed rate and positioning accuracy are significantly improved by adding GPS observations, and the GPS/GLONASS single-frequency RTK using the enhanced algorithm has a similar performance to GPS dual-frequency RTK, according to long-term statistics. And, another code-division multiple access (CDMA) system, BDS, is introduced, which shows that the IFB rate estimated by BDS+GLONASS observations is as good as that by GPS+GLONASS. The experiment with the muti-GNSS single-epoch RTK shows that the precision and reliability are enhanced by adding another system or frequency observation. Thus, single-/dual-frequency GLONASS observations are available and reliable for single-epoch RTK and can improve the precision and reliability of GPS RTK by using the enhanced algorithm.

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Publication Details

Journal
Geomatics
Published
2026-09-29
DOI
https://doi.org/10.3390/geomatics6050107
Primary Topic
GNSS positioning and interference
Type
article
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article

GLONASS RTK Positioning Enhanced by Combining GPS/BDS Signals

Junyao Ke, Yifei Yang, Mingxian Hu, Haojie ZHANG et al.
Geomatics
GNSS positioning and interference
article

GLONASS RTK Positioning Enhanced by Combining GPS/BDS Signals

Junyao Ke, Yifei Yang, Mingxian Hu, Haojie ZHANG, Yue Zuo, Yibin Yao, Chaoqian Xu
article en

Abstract

Due to inter-frequency phase bias (IFB), GLONASS is ignored when discussing real-time kinematic (RTK) positioning. Although this problem has been effectively solved, defects still exist when the number of tracked satellites is small or when single-frequency observations are processed. This contribution proposes an enhanced method that can effectively overcome these existing shortcomings by combining GLONASS and GPS observations. By using an enhanced algorithm, the performance of estimated IFB rate is more stable and reliable when there are few tracked satellites, and estimating the IFB rate with a single frequency is available. In this contribution, the GLONASS dual-frequency RTK ambiguity fixed rate and positioning accuracy are significantly improved by adding GPS observations, and the GPS/GLONASS single-frequency RTK using the enhanced algorithm has a similar performance to GPS dual-frequency RTK, according to long-term statistics. And, another code-division multiple access (CDMA) system, BDS, is introduced, which shows that the IFB rate estimated by BDS+GLONASS observations is as good as that by GPS+GLONASS. The experiment with the muti-GNSS single-epoch RTK shows that the precision and reliability are enhanced by adding another system or frequency observation. Thus, single-/dual-frequency GLONASS observations are available and reliable for single-epoch RTK and can improve the precision and reliability of GPS RTK by using the enhanced algorithm.

GeomaticsVol. 6(5)
Central South University (CN), Wuhan University (CN), Guangxi Zhuang Autonomous Region Health and Family Planning (CN)
Openalex Percentile: Top 8%
GNSS positioning and interference
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GLONASS RTK Positioning Enhanced by Combining GPS/BDS Signals — Junyao Ke, Yifei Yang, et al. · Geomatics (2026) | TGRS Research Map | TGRS