Positioning precision analysis of GNSS multi-frequency carrier phase combinations |
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Authors: | Yue Wu Yong Pan Yimin Fan Xiaojun Wang |
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Affiliation: | 1. Institute of Seismology , China Earthquake Administration , Wuhan , China;2. Geological Hazards Monitor Center of Three Gorges , China Institute of Geo-environment Monitoring , Yichang , China |
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Abstract: | GPS positioning precision is affected by various error sources, and traditional combinations of GPS carrier phase observations have their own limitations such as the wide-lane, the narrow-lane and the ionospheric-free combinations. To obtain the optimal positioning precision, a new linear combination method is addressed through the variance-covariance (VCV) of the GPS multi-frequency carrier phase combination equations, and the impact of the positioning precision is analyzed with the changing of the observation errors deduced by the law of error propagation. For the high precision positioning with only one carrier phase combination, the optimal combination method is deduced and further validated by an example of a baseline resolution with 60 km length. The result indicates that this method is the simplest, and the positioning precision is the best. Therefore, it is useful for long baseline quick positioning for different precision requirements in various distances. |
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Keywords: | GPS multi-frequency combination propagation of errors positioning precision |
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