Precise orbit products are essential and a prerequisite for global navigation satellite system (GNSS) applications, which, however, are unavailable or unusable when satellites are undertaking maneuvers. We propose a clock-constrained reverse precise point positioning (RPPP) method to generate the rather precise orbits for GNSS maneuvering satellites. In this method, the precise clock estimates generated by the dynamic precise orbit determination (POD) processing before maneuvering are modeled and predicted to the maneuvering periods and they constrain the RPPP POD during maneuvering. The prediction model is developed according to different clock types, of which the 2-h prediction error is 0.31 ns and 1.07 ns for global positioning system (G...
Satellite orbit error and clock bias are the keys to precise point positioning (PPP). The traditiona...
We have developed a software package to determine high precision GPS satellite orbit and clock, usin...
Many sophisticated Global Navigation Satellite System (GNSS) applications require high-precision sat...
In order to maintain optimal signal coverage, GNSS satellites have to experience orbital maneuvers. ...
A set of Global Navigation Satellite Systems (GNSS) satellite orbit and clock offset are an essentia...
The processing of radio-occultation (RO) observations for numerical weather prediction relies on a n...
This study proposes real-time orbit/clock determination of Korean Navigation Satellite System (KNSS)...
The accuracy of ultra-rapid orbits is a key parameter for the performance of GNSS (Global Navigation...
Abstract: The Global Positioning System (GPS) is likely to become a powerful means in precise orbit...
Both the double-differenced and zero-differenced GNSS positioning strategies have been widely used b...
Precise Point Positing (PPP) with real-time orbit and clock correction streams has become an establi...
Satellite orbit and clock corrections are always treated as known quantities in GPS positioning mode...
The real-time GNSS applications are of increasing interest. The Precise Point Positioning tech-nique...
The quality of satellite clock offset affects the performances of positioning, navigation and timing...
Computing a position with Single Frequency Precise Point Positioning (SF-PPP) algorithms compels to...
Satellite orbit error and clock bias are the keys to precise point positioning (PPP). The traditiona...
We have developed a software package to determine high precision GPS satellite orbit and clock, usin...
Many sophisticated Global Navigation Satellite System (GNSS) applications require high-precision sat...
In order to maintain optimal signal coverage, GNSS satellites have to experience orbital maneuvers. ...
A set of Global Navigation Satellite Systems (GNSS) satellite orbit and clock offset are an essentia...
The processing of radio-occultation (RO) observations for numerical weather prediction relies on a n...
This study proposes real-time orbit/clock determination of Korean Navigation Satellite System (KNSS)...
The accuracy of ultra-rapid orbits is a key parameter for the performance of GNSS (Global Navigation...
Abstract: The Global Positioning System (GPS) is likely to become a powerful means in precise orbit...
Both the double-differenced and zero-differenced GNSS positioning strategies have been widely used b...
Precise Point Positing (PPP) with real-time orbit and clock correction streams has become an establi...
Satellite orbit and clock corrections are always treated as known quantities in GPS positioning mode...
The real-time GNSS applications are of increasing interest. The Precise Point Positioning tech-nique...
The quality of satellite clock offset affects the performances of positioning, navigation and timing...
Computing a position with Single Frequency Precise Point Positioning (SF-PPP) algorithms compels to...
Satellite orbit error and clock bias are the keys to precise point positioning (PPP). The traditiona...
We have developed a software package to determine high precision GPS satellite orbit and clock, usin...
Many sophisticated Global Navigation Satellite System (GNSS) applications require high-precision sat...