For short baseline real-time kinematic (RTK) positioning, the atmosphere and broadcast ephemeris errors can be usually eliminated in double-differenced (DD) processing for synchronous observations. However, in the case of possible communication latency time, these errors may not be eliminated in DD treatments due to their variations during latency time. In addition, the time variation of these errors may present different characteristics among GPS, GLONASS, BDS, and GALILEO due to different satellite orbit and clock types. In this contribution, the formulas for studying the broadcast orbit and clock offset errors and atmosphere error in asynchronous RTK (ARTK) model is proposed, and comprehensive experimental analysis is performed to numeri...
The real-time kinematic precise point positioning (PPP-RTK) technique enables integer ambiguity reso...
With the recent rapid revival of the GLONASS constellation, it is possible for the GLONASS system to...
Until now, RTK (real-time kinematic) and NRTK (Network-based RTK) have been the most popular cm-leve...
We will focus on single-frequency single-baseline real-time kinematic (RTK) combining four Code Divi...
In this contribution we will focus on long single-baseline real-time kinematic (RTK) positioning whe...
For the development of a global navigation satellite system (GNSS), the third generation of BeiDou N...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
GNSS RTK (Real-Time Kinematic) positioning techniques are based on precise but ambiguous carrier pha...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
For GPS medium-long baseline real-time kinematic (RTK) positioning, the troposphere parameter is int...
For GPS medium-long baseline real-time kinematic (RTK) positioning, the troposphere parameter is int...
PolyU Library Call No.: [THS] LG51 .H577P LSGI 2016 XuYix, 158 pages :color illustrationsNetwork Rea...
An inter-system differencing model between two Global Navigation Satellite Systems (GNSS) enables on...
The real-time kinematic precise point positioning (PPP-RTK) technique enables integer ambiguity reso...
With the recent rapid revival of the GLONASS constellation, it is possible for the GLONASS system to...
Until now, RTK (real-time kinematic) and NRTK (Network-based RTK) have been the most popular cm-leve...
We will focus on single-frequency single-baseline real-time kinematic (RTK) combining four Code Divi...
In this contribution we will focus on long single-baseline real-time kinematic (RTK) positioning whe...
For the development of a global navigation satellite system (GNSS), the third generation of BeiDou N...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
GNSS RTK (Real-Time Kinematic) positioning techniques are based on precise but ambiguous carrier pha...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
Double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellatio...
For GPS medium-long baseline real-time kinematic (RTK) positioning, the troposphere parameter is int...
For GPS medium-long baseline real-time kinematic (RTK) positioning, the troposphere parameter is int...
PolyU Library Call No.: [THS] LG51 .H577P LSGI 2016 XuYix, 158 pages :color illustrationsNetwork Rea...
An inter-system differencing model between two Global Navigation Satellite Systems (GNSS) enables on...
The real-time kinematic precise point positioning (PPP-RTK) technique enables integer ambiguity reso...
With the recent rapid revival of the GLONASS constellation, it is possible for the GLONASS system to...
Until now, RTK (real-time kinematic) and NRTK (Network-based RTK) have been the most popular cm-leve...