Precise point positioning with ambiguity resolution (PPP-AR) based on multiple global navigation satellite system (multi-GNSS) constellations is an important high-precision positioning tool. However, some unmodeled satellite and receiver biases (such as errors in satellite attitude) make it difficult to fix carrier-phase ambiguities. In order to fix ambiguities of eclipsing satellites, accurate integer clock and satellite attitude products (i.e., attitude quaternion) have been provided by the International GNSS Service (IGS). Nevertheless, the quality of these products and their positioning performance in multi-GNSS PPP-AR have not been investigated yet. Using the PRIDE PPP-AR II software associated with the corresponding rapid satellite or...
Correction of the fractional cycle bias (FCB) in the undifferenced ambiguity allows precise point po...
“Pass-by-pass” or “track-to-track” ambiguity resolution removes Global Navigation Satellite System (...
The use of carrier phase data play an important role for high-precision Global Navigation Satellite...
Suffering from hardware phase biases originating from satellites and the receiver, precise point pos...
Precise Point Positioning (PPP) is traditionally based on dual-frequency observations of GPS or GPS/...
The benefits of an increased number of global navigation satellite systems (GNSS) in space have been...
Conventional relative kinematic positioning is difficult to be applied in the polar region of Earth ...
When satellites enter into the noon maneuver or the shadow crossing regimes, the actual attitudes wi...
Ambiguity resolution (AR) is a core technology that helps to speed up convergence time and increase ...
Both the double-differenced and zero-differenced GNSS positioning strategies have been widely used b...
A large number of researches suggest that integer ambiguity resolution(IAR) significantly improve th...
GPS precise point positioning (PPP) has been used in many scientific and commercial applications due...
This paper begins with a brief review of the current state of development of precise point positioni...
In this PhD thesis multi-Global Navigation Satellite System (GNSS) positioning results when combinin...
Since the precision of GEO satellite orbit is low and the observations of GEO are affected seriously...
Correction of the fractional cycle bias (FCB) in the undifferenced ambiguity allows precise point po...
“Pass-by-pass” or “track-to-track” ambiguity resolution removes Global Navigation Satellite System (...
The use of carrier phase data play an important role for high-precision Global Navigation Satellite...
Suffering from hardware phase biases originating from satellites and the receiver, precise point pos...
Precise Point Positioning (PPP) is traditionally based on dual-frequency observations of GPS or GPS/...
The benefits of an increased number of global navigation satellite systems (GNSS) in space have been...
Conventional relative kinematic positioning is difficult to be applied in the polar region of Earth ...
When satellites enter into the noon maneuver or the shadow crossing regimes, the actual attitudes wi...
Ambiguity resolution (AR) is a core technology that helps to speed up convergence time and increase ...
Both the double-differenced and zero-differenced GNSS positioning strategies have been widely used b...
A large number of researches suggest that integer ambiguity resolution(IAR) significantly improve th...
GPS precise point positioning (PPP) has been used in many scientific and commercial applications due...
This paper begins with a brief review of the current state of development of precise point positioni...
In this PhD thesis multi-Global Navigation Satellite System (GNSS) positioning results when combinin...
Since the precision of GEO satellite orbit is low and the observations of GEO are affected seriously...
Correction of the fractional cycle bias (FCB) in the undifferenced ambiguity allows precise point po...
“Pass-by-pass” or “track-to-track” ambiguity resolution removes Global Navigation Satellite System (...
The use of carrier phase data play an important role for high-precision Global Navigation Satellite...