Satellite remote sensing systems require accurate, autonomous and real-time orbit determinations (RTOD) for geo-referencing. Onboard Global Positioning System (GPS) has widely been used to undertake such tasks. In this paper, a novel RTOD method achieving decimeter precision using GPS carrier phases, required by China’s HY2A and ZY3 missions, is presented. A key to the algorithm success is the introduction of a new parameter, termed pseudo-ambiguity. This parameter combines the phase ambiguity, the orbit, and clock offset errors of the GPS broadcast ephemeris together to absorb a large part of the combined error. Based on the analysis of the characteristics of the orbit and clock offset errors, the pseudo-ambiguity can be modeled as a rando...
The real-time integer-ambiguity resolution of the carrier-phase observation is one of the most effec...
ZY-3 01 and ZY-3 02 satellites, as important remote sensing stereoscopic mapping satellites in China...
An application of a precision orbit determination technique for NASA's Earth Observing System (EOS) ...
Continued advancements in remote sensing technology along with a trend towards highly autonomous spa...
Recent advances in spaceborne GPS technology have shown significant advantages in many aspects over ...
We have developed a software package to determine high precision GPS satellite orbit and clock, usin...
Geostationary satellites (GEOs) play a significant role in the regional satellite navigation system....
Fixing single-satellite GPS carrier phase ambiguity could significantly improve the orbit accuracy o...
Real-time precise orbit determination (POD) of low earth orbiters (LEOs) is crucial for orbit mainte...
The Global Positioning System (GPS) is nowadays widely used for navigation of spacecraft in low Eart...
The NAVSTAR Global Positioning System (GPS) has been under development by the US Department of Defen...
The Global Positioning System (GPS) is nowadays widely used for navigation of spacecraft in low Eart...
An orbit determination Kalman filter has been developed that uses two types of mea-surements of time...
The accuracy of user position by GPS is heavily dependent upon the accuracy of satellite position wh...
In the framework of GPS-based onboard orbit determination in real-time, a prototype implementation o...
The real-time integer-ambiguity resolution of the carrier-phase observation is one of the most effec...
ZY-3 01 and ZY-3 02 satellites, as important remote sensing stereoscopic mapping satellites in China...
An application of a precision orbit determination technique for NASA's Earth Observing System (EOS) ...
Continued advancements in remote sensing technology along with a trend towards highly autonomous spa...
Recent advances in spaceborne GPS technology have shown significant advantages in many aspects over ...
We have developed a software package to determine high precision GPS satellite orbit and clock, usin...
Geostationary satellites (GEOs) play a significant role in the regional satellite navigation system....
Fixing single-satellite GPS carrier phase ambiguity could significantly improve the orbit accuracy o...
Real-time precise orbit determination (POD) of low earth orbiters (LEOs) is crucial for orbit mainte...
The Global Positioning System (GPS) is nowadays widely used for navigation of spacecraft in low Eart...
The NAVSTAR Global Positioning System (GPS) has been under development by the US Department of Defen...
The Global Positioning System (GPS) is nowadays widely used for navigation of spacecraft in low Eart...
An orbit determination Kalman filter has been developed that uses two types of mea-surements of time...
The accuracy of user position by GPS is heavily dependent upon the accuracy of satellite position wh...
In the framework of GPS-based onboard orbit determination in real-time, a prototype implementation o...
The real-time integer-ambiguity resolution of the carrier-phase observation is one of the most effec...
ZY-3 01 and ZY-3 02 satellites, as important remote sensing stereoscopic mapping satellites in China...
An application of a precision orbit determination technique for NASA's Earth Observing System (EOS) ...