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Journal ArticleDOI

Triple-frequency GPS precise point positioning with rapid ambiguity resolution

Jianghui Geng, +1 more
- 22 Feb 2013 - 
- Vol. 87, Iss: 5, pp 449-460
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TLDR
In this paper, triple-frequency PPP signals are exploited to enable rapid convergences to ambiguity-fixed solutions in real-time PPPP by using the Melbourne-Wubbena combination observable on L2 and L5.
Abstract
At present, reliable ambiguity resolution in real-time GPS precise point positioning (PPP) can only be achieved after an initial observation period of a few tens of minutes. In this study, we propose a method where the incoming triple-frequency GPS signals are exploited to enable rapid convergences to ambiguity-fixed solutions in real-time PPP. Specifically, extra-wide-lane ambiguity resolution can be first achieved almost instantaneously with the Melbourne-Wubbena combination observable on L2 and L5. Then the resultant unambiguous extra-wide-lane carrier-phase is combined with the wide-lane carrier-phase on L1 and L2 to form an ionosphere-free observable with a wavelength of about 3.4 m. Although the noise of this observable is around 100 times the raw carrier-phase noise, its wide-lane ambiguity can still be resolved very efficiently, and the resultant ambiguity-fixed observable can assist much better than pseudorange in speeding up succeeding narrow-lane ambiguity resolution. To validate this method, we use an advanced hardware simulator to generate triple-frequency signals and a high-grade receiver to collect 1-Hz data. When the carrier-phase precisions on L1, L2 and L5 are as poor as 1.5, 6.3 and 1.5 mm, respectively, wide-lane ambiguity resolution can still reach a correctness rate of over 99 % within 20 s. As a result, the correctness rate of narrow-lane ambiguity resolution achieves 99 % within 65 s, in contrast to only 64 % within 150 s in dual-frequency PPP. In addition, we also simulate a multipath-contaminated data set and introduce new ambiguities for all satellites every 120 s. We find that when multipath effects are strong, ambiguity-fixed solutions are achieved at 78 % of all epochs in triple-frequency PPP whilst almost no ambiguities are resolved in dual-frequency PPP. Therefore, we demonstrate that triple-frequency PPP has the potential to achieve ambiguity-fixed solutions within a few minutes, or even shorter if raw carrier-phase precisions are around 1 mm. In either case, we conclude that the efficiency of ambiguity resolution in triple-frequency PPP is much higher than that in dual-frequency PPP.

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Citations
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Journal ArticleDOI

Review and principles of PPP-RTK methods

TL;DR: It is shown that PPP-RTK is a relative technique for which the ‘single-receiver user’ integer ambiguities are in fact double-differenced ambiguITIES, and the transformational links between the different methods and their PPP -RTK corrections are determined, thereby showing how different PPP –RTK methods can be mixed between network and users.
Journal ArticleDOI

On the estimability of parameters in undifferenced, uncombined GNSS network and PPP-RTK user models by means of S-system theory

TL;DR: In this article, the authors present a method for PPP-RTK that is based on the undifferenced, uncombined GNSS observation equations, thereby keeping all parameters in the model, including the essential ambiguity parameters, which have the integer property which is clearly following from the interpretation of satellite phase biases from the network.
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Physical applications of GPS geodesy: a review.

TL;DR: The relevant concepts of geodetic theory, data analysis, and physical modeling for a myriad of processes at multiple spatial and temporal scales are reviewed, including the extensive global infrastructure that has been built to support GPS geodesy consisting of thousands of continuously operating stations.
Journal ArticleDOI

Multipath analysis of code measurements for BeiDou geostationary satellites

TL;DR: In this article, a linear combination of observations reflecting code multipath was employed and BDS multipath time series over long periods were analyzed with the Fourier transform, correlation and wavelet transform.
Journal ArticleDOI

Modeling and assessment of triple-frequency BDS precise point positioning

TL;DR: The modeling and assessment of triple-frequency PPP with BDS data is contributed, showing that the benefits of third frequency are significant in situations of where there is poor tracking and contaminated observations on frequencies B1 and B2 in kinematic PPP tests.
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