Limiting factors for the precise orbit determination (POD) of low-earth orbit (LEO) satellite using dual-frequency GPS are nowadays mainly encountered with the in-flight phase error modeling. The phase error is modeled as a systematic and a random component each depending on the direction of GPS signal reception. The systematic part and standard deviation of random part in phase error model are, respectively, estimated by bin-wise mean and standard deviation values of phase postfit residuals computed by orbit determination. By removing the systematic component and adjusting the weight of phase observation data according to standard deviation of random component, the orbit can be further improved by POD approach. The GRACE data of 1–31 Janua...
Most satellites in a low-Earth orbit (LEO) with demanding requirements on precise orbit determinatio...
Precise Point Positing (PPP) with real-time orbit and clock correction streams has become an establi...
To face important societal challenges like sea level variations, climate change and natural hazards ...
Precise knowledge of the phase center location of the global navigation satellite system (GNSS) ante...
Currently, low Earth orbit (LEO) satellites are attracting great attention in the navigation enhance...
The need for precise orbit determination (POD) has grown significantly due to the increased amount o...
Most satellites in a low-Earth orbit (LEO) with demanding requirements on precise orbit determinatio...
The interest in a precise orbit determination (POD) of Low Earth Orbiters (LEOs) especially in pure ...
Fixing single-satellite GPS carrier phase ambiguity could significantly improve the orbit accuracy o...
AbstractIn-flight phase center systematic errors of global positioning system (GPS) receiver antenna...
Real-time precise orbit determination (POD) of low earth orbiters (LEOs) is crucial for orbit mainte...
The precise orbit determination (POD) of low earth orbiter (LEO) has complied with its required posi...
Precise absolute and relative orbit determination, referred to as Precise Orbit Determination (POD) ...
Precise absolute and relative orbit determination, referred to as Precise Orbit Determination (POD) ...
Precise Orbit Determination (POD) is the procedure for determining the orbit of a satellite with hig...
Most satellites in a low-Earth orbit (LEO) with demanding requirements on precise orbit determinatio...
Precise Point Positing (PPP) with real-time orbit and clock correction streams has become an establi...
To face important societal challenges like sea level variations, climate change and natural hazards ...
Precise knowledge of the phase center location of the global navigation satellite system (GNSS) ante...
Currently, low Earth orbit (LEO) satellites are attracting great attention in the navigation enhance...
The need for precise orbit determination (POD) has grown significantly due to the increased amount o...
Most satellites in a low-Earth orbit (LEO) with demanding requirements on precise orbit determinatio...
The interest in a precise orbit determination (POD) of Low Earth Orbiters (LEOs) especially in pure ...
Fixing single-satellite GPS carrier phase ambiguity could significantly improve the orbit accuracy o...
AbstractIn-flight phase center systematic errors of global positioning system (GPS) receiver antenna...
Real-time precise orbit determination (POD) of low earth orbiters (LEOs) is crucial for orbit mainte...
The precise orbit determination (POD) of low earth orbiter (LEO) has complied with its required posi...
Precise absolute and relative orbit determination, referred to as Precise Orbit Determination (POD) ...
Precise absolute and relative orbit determination, referred to as Precise Orbit Determination (POD) ...
Precise Orbit Determination (POD) is the procedure for determining the orbit of a satellite with hig...
Most satellites in a low-Earth orbit (LEO) with demanding requirements on precise orbit determinatio...
Precise Point Positing (PPP) with real-time orbit and clock correction streams has become an establi...
To face important societal challenges like sea level variations, climate change and natural hazards ...