Compared with the traditional ionospheric-free linear combination precise point positioning (PPP) model, the un-differenced and uncombined (UDUC) PPP model using original observations can keep all the information of the observations and be easily extended to any number of frequencies. However, the current studies about the multi-frequency UDUC-PPP ambiguity resolution (AR) were mainly based on the triple-frequency BeiDou navigation satellite system (BDS) observations or simulated data. Limited by many factors, for example the accuracy of BDS precise orbit and clock products, the advantages of triple-frequency signals to UDUC-PPP AR were not fully exploited. As Galileo constellations have been upgraded by increasing the number of 19 useable ...
Multi-frequency and multi-GNSS measurements from modernized satellites are properly integrated for P...
Suffering from hardware phase biases originating from satellites and the receiver, precise point pos...
The availability of signals on three or more frequencies from multiple GNSS constellations provides ...
With the modernization of Global Navigation Satellite System (GNSS), triple- or multi-frequency sign...
Along with the rapid development of GNSS, not only BeiDou, but also Galileo, and the newly launched ...
With the modernization of Global Navigation Satellite System (GNSS), triple- or multi-frequency sign...
A single-receiver integer ambiguity resolution-enabled precise point positioning (PPP-RTK) user expe...
This paper introduces a new dual-frequency precise point positioning (PPP) model, which combines the...
From network RTK to PPP-RTK, it is highly expected that high-precision positioning within a few minu...
The fusion of low earth orbit (LEO) constellation and Global Navigation Satellite Systems (GNSS) can...
Multi-frequency signals have brought new opportunities and challenges to global navigation satellite...
This paper proposes a method for precise point positioning with integer ambiguity resolution (PPP-AR...
Precise Point Positioning (PPP), as a global precise positioning technique, suffers from relatively ...
The single-receiver integer ambiguity resolution-enabled variant of precise point positioning (PPP),...
The single-receiver integer ambiguity resolution-enabled variant of precise point positioning (PPP),...
Multi-frequency and multi-GNSS measurements from modernized satellites are properly integrated for P...
Suffering from hardware phase biases originating from satellites and the receiver, precise point pos...
The availability of signals on three or more frequencies from multiple GNSS constellations provides ...
With the modernization of Global Navigation Satellite System (GNSS), triple- or multi-frequency sign...
Along with the rapid development of GNSS, not only BeiDou, but also Galileo, and the newly launched ...
With the modernization of Global Navigation Satellite System (GNSS), triple- or multi-frequency sign...
A single-receiver integer ambiguity resolution-enabled precise point positioning (PPP-RTK) user expe...
This paper introduces a new dual-frequency precise point positioning (PPP) model, which combines the...
From network RTK to PPP-RTK, it is highly expected that high-precision positioning within a few minu...
The fusion of low earth orbit (LEO) constellation and Global Navigation Satellite Systems (GNSS) can...
Multi-frequency signals have brought new opportunities and challenges to global navigation satellite...
This paper proposes a method for precise point positioning with integer ambiguity resolution (PPP-AR...
Precise Point Positioning (PPP), as a global precise positioning technique, suffers from relatively ...
The single-receiver integer ambiguity resolution-enabled variant of precise point positioning (PPP),...
The single-receiver integer ambiguity resolution-enabled variant of precise point positioning (PPP),...
Multi-frequency and multi-GNSS measurements from modernized satellites are properly integrated for P...
Suffering from hardware phase biases originating from satellites and the receiver, precise point pos...
The availability of signals on three or more frequencies from multiple GNSS constellations provides ...