Continuous and stable precision satellite clock offsets are an important guarantee for real-time precise point positioning (PPP). However, in real-time PPP, the estimation of a satellite clock is often interrupted for various reasons such as network fluctuations, which leads to a long time for clocks to converge again. Typically, code biases are assumed to stay constant over time in clock estimation according to the current literature. In this contribution, it is shown that this assumption reduces the convergence speed of estimation, and the satellite clocks are still unstable for several hours after convergence. For this reason, we study the influence of different code bias extraction schemes, that is, taking code biases as constants, extr...
A large number of researches suggest that integer ambiguity resolution(IAR) significantly improve th...
The availability of real-time corrections to broadcast satellite orbits and clock offset enables imp...
In global navigation satellite systems (GNSSs)-based positioning, user receiver clock jump is a comm...
Satellite orbit error and clock bias are the keys to precise point positioning (PPP). The traditiona...
The real-time kinematic precise point positioning (PPP-RTK) technique enables integer ambiguity reso...
Precise point positioning can provide accurate coordinates to users without reference stations, and ...
The application of real-time precise point positioning (PPP) requires real-time precise orbit and cl...
Computing a position with Single Frequency Precise Point Positioning (SF-PPP) algorithms compels t...
Precise point positioning (PPP) has become a competitive time and frequency transfer technique using...
Precise satellite orbit and clocks are essential for providing high accuracy real-time PPP (Precise ...
Time synchronization is one of the main applications of Global Navigation Satellite System (GNSS). I...
In this article, an algorithm for clock offset estimation of the GPS satellites is presented. The al...
In order to obtain high quality positions from navigation satellites, range errors have to be identi...
Computing a position with Single Frequency Precise Point Positioning (SF-PPP) algorithms compels to...
In order to catch up the short-term clock variation of GNSS satellites, clock corrections must be es...
A large number of researches suggest that integer ambiguity resolution(IAR) significantly improve th...
The availability of real-time corrections to broadcast satellite orbits and clock offset enables imp...
In global navigation satellite systems (GNSSs)-based positioning, user receiver clock jump is a comm...
Satellite orbit error and clock bias are the keys to precise point positioning (PPP). The traditiona...
The real-time kinematic precise point positioning (PPP-RTK) technique enables integer ambiguity reso...
Precise point positioning can provide accurate coordinates to users without reference stations, and ...
The application of real-time precise point positioning (PPP) requires real-time precise orbit and cl...
Computing a position with Single Frequency Precise Point Positioning (SF-PPP) algorithms compels t...
Precise point positioning (PPP) has become a competitive time and frequency transfer technique using...
Precise satellite orbit and clocks are essential for providing high accuracy real-time PPP (Precise ...
Time synchronization is one of the main applications of Global Navigation Satellite System (GNSS). I...
In this article, an algorithm for clock offset estimation of the GPS satellites is presented. The al...
In order to obtain high quality positions from navigation satellites, range errors have to be identi...
Computing a position with Single Frequency Precise Point Positioning (SF-PPP) algorithms compels to...
In order to catch up the short-term clock variation of GNSS satellites, clock corrections must be es...
A large number of researches suggest that integer ambiguity resolution(IAR) significantly improve th...
The availability of real-time corrections to broadcast satellite orbits and clock offset enables imp...
In global navigation satellite systems (GNSSs)-based positioning, user receiver clock jump is a comm...