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A Multipath Hemispherical Map with Strict Quality Control for Multipath Mitigation
by
Xi, Kewei
, Zhou, Houxiang
, Zhong, Shengjian
, Wang, Xiaoya
, Shen, Hang
in
Accuracy
/ Algorithms
/ Analysis
/ Antennas
/ Artificial satellites
/ Control methods
/ Data processing
/ Errors
/ Global navigation satellite system
/ Global positioning systems
/ GPS
/ Methods
/ multipath error mitigation
/ multipath hemispherical map
/ Normal distribution
/ Quality control
/ Quality management
/ Real time
/ Receivers & amplifiers
/ Satellites
/ strict quality control
2025
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A Multipath Hemispherical Map with Strict Quality Control for Multipath Mitigation
by
Xi, Kewei
, Zhou, Houxiang
, Zhong, Shengjian
, Wang, Xiaoya
, Shen, Hang
in
Accuracy
/ Algorithms
/ Analysis
/ Antennas
/ Artificial satellites
/ Control methods
/ Data processing
/ Errors
/ Global navigation satellite system
/ Global positioning systems
/ GPS
/ Methods
/ multipath error mitigation
/ multipath hemispherical map
/ Normal distribution
/ Quality control
/ Quality management
/ Real time
/ Receivers & amplifiers
/ Satellites
/ strict quality control
2025
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Do you wish to request the book?
A Multipath Hemispherical Map with Strict Quality Control for Multipath Mitigation
by
Xi, Kewei
, Zhou, Houxiang
, Zhong, Shengjian
, Wang, Xiaoya
, Shen, Hang
in
Accuracy
/ Algorithms
/ Analysis
/ Antennas
/ Artificial satellites
/ Control methods
/ Data processing
/ Errors
/ Global navigation satellite system
/ Global positioning systems
/ GPS
/ Methods
/ multipath error mitigation
/ multipath hemispherical map
/ Normal distribution
/ Quality control
/ Quality management
/ Real time
/ Receivers & amplifiers
/ Satellites
/ strict quality control
2025
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A Multipath Hemispherical Map with Strict Quality Control for Multipath Mitigation
Journal Article
A Multipath Hemispherical Map with Strict Quality Control for Multipath Mitigation
2025
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Overview
The multipath effect is a critical factor that prevents the Global Navigation Satellite System (GNSS) from achieving millimeter-level positioning accuracy. A multipath hemispherical map (MHM) is a popular approach to achieving real-time multipath error mitigation. The premise of the constructed MHM model is that the residuals in the grid only contain multipath errors and noise without any outliers. However, when there are numerous obvious outliers in each grid, the traditional quality control method is unable to detect them effectively. Therefore, we propose a multipath hemispherical map with strict quality control (MHM-S) to mitigate multipath errors. This method first uses the maximum phase delay to eliminate obvious outliers. Then, the 3-sigma rule and F-test are applied to remove the remaining few outliers in the grid. After applying the proposed MHM-S method, the experimental results show that when the PRN20 satellite is affected by outliers, the standard deviation (STD) reduction rate of the MHM-S residuals is 12.03% compared with the residual STDs of the MHM model. In addition, we evaluate the capabilities of MHM-S with carrier phase observation (MHM-SC) and carrier phase and pseudo-range observation (MHM-SCP) models in multipath error mitigation. Especially in the east direction, the positioning accuracy of the MHM-SCP model is improved by 48% compared with the MHM-SC model.
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