Reliable ambiguity resolution (AR) is essential to Real-Time Kinematic (RTK) positioning and its applications, since incorrect ambiguity fixing can lead to largely biased positioning solutions. A partial ambiguity fixing technique is developed to improve the reliability of AR, involving partial ambiguity decorrelation (PAD) and partial ambiguity resolution (PAR). Decorrelation transformation could substantially amplify the biases in the phase measurements. The purpose of PAD is to find the optimum trade-off between decorrelation and worst-case bias amplification. The concept of PAR refers to the case where only a subset of the ambiguities can be fixed correctly to their integers in the integer least-squares (ILS) estimation system at high s...
The success of high-precision Global Navigation Satellite Systems (GNSS) kinematic positioning depen...
Rapid and accurate ambiguity resolution is the core of high-precision precise point positioning (PPP...
and is continuing his studies, towards a Ph.D. in Geomatics Engineering, in the field of positioning...
Reliable ambiguity resolution (AR) is essential to Real-Time Kinematic (RTK) positioning and its app...
Global Navigation Satellite Systems (GNSS)-based observation systems can provide high precision posi...
The use of carrier phase data is the main driver for high-precision Global Navigation Satellite Syst...
GNSS carrier phase observations are fundamental for safety-critical applications where the requireme...
Ambiguity resolution plays a crucial role in real time kinematic GNSS positioning which gives centim...
Ambiguity resolution plays a crucial role in real time kinematic GNSS positioning which gives centim...
Many large-scale GNSS CORS networks have been deployed around the world to support various commercia...
Reliability of carrier phase ambiguity resolution (AR) of an integer least-squares (ILS) problem dep...
Global Navigation Satellite Systems (GNSSs) have been widely used in surveying, geodesy and navigati...
The combination of multiple global navigation satellite systems (GNSSs) is able to improve the accur...
Global Navigation Satellite System (GNSS) has been developed in recent several decades, which provid...
Abstract Global Navigation Satellite System precise positioning using carrier phase measurements req...
The success of high-precision Global Navigation Satellite Systems (GNSS) kinematic positioning depen...
Rapid and accurate ambiguity resolution is the core of high-precision precise point positioning (PPP...
and is continuing his studies, towards a Ph.D. in Geomatics Engineering, in the field of positioning...
Reliable ambiguity resolution (AR) is essential to Real-Time Kinematic (RTK) positioning and its app...
Global Navigation Satellite Systems (GNSS)-based observation systems can provide high precision posi...
The use of carrier phase data is the main driver for high-precision Global Navigation Satellite Syst...
GNSS carrier phase observations are fundamental for safety-critical applications where the requireme...
Ambiguity resolution plays a crucial role in real time kinematic GNSS positioning which gives centim...
Ambiguity resolution plays a crucial role in real time kinematic GNSS positioning which gives centim...
Many large-scale GNSS CORS networks have been deployed around the world to support various commercia...
Reliability of carrier phase ambiguity resolution (AR) of an integer least-squares (ILS) problem dep...
Global Navigation Satellite Systems (GNSSs) have been widely used in surveying, geodesy and navigati...
The combination of multiple global navigation satellite systems (GNSSs) is able to improve the accur...
Global Navigation Satellite System (GNSS) has been developed in recent several decades, which provid...
Abstract Global Navigation Satellite System precise positioning using carrier phase measurements req...
The success of high-precision Global Navigation Satellite Systems (GNSS) kinematic positioning depen...
Rapid and accurate ambiguity resolution is the core of high-precision precise point positioning (PPP...
and is continuing his studies, towards a Ph.D. in Geomatics Engineering, in the field of positioning...