As a first step towards studying the ionosphere with the global navigation satellite system (GNSS), leveling the phase to the code geometry-free observations on an arc-by-arc basis yields the ionospheric observables, interpreted as a combination of slant total electron content along with satellite and receiver differential code biases (DCB). The leveling errors in the ionospheric observables may arise during this procedure, which, according to previous studies by other researchers, are due to the combined effects of the code multipath and the intra-day variability in the receiver DCB. In this paper we further identify the short-term temporal variations of receiver differential phase biases (DPB) as another possible cause of leveling errors....
The estimation of differential code bias (DCB) of GPS system is one of the necessary steps for total...
Vertical total electron content (VTEC) parameters estimated using global navigation satellite system...
AbstractWhile estimating ionospheric total electron content (TEC) using both pseudorange and phase G...
The satellite and receiver differential code biases (DCB) combined, account for the main error budge...
© 2015, Science China Press and Springer-Verlag Berlin Heidelberg. Care should be taken to minimize ...
AbstractWhile estimating ionospheric total electron content (TEC) using both pseudorange and phase G...
The ionosphere has the largest contribution to the Global Navigation Satellite System (GNSS) error b...
When sensing Earth's ionosphere using multiple Global Navigation Satellite Systems (GNSSs), special ...
The ionosphere has the largest contribution to the Global Navigation Satellite System (GNSS) error b...
In ionospheric modeling, the differential code biases (DCBs) are a non-negligible error source, whic...
Sensing the ionosphere with the global positioning system involves two sequential tasks, namely the ...
In ionospheric modeling, the differential code biases (DCBs) are a non-negligible error source, whic...
The differential code bias (DCB) of global navigation satellite systems (GNSSs) affects precise ion...
In ionospheric modeling, the differential code biases (DCBs) are a non-negligible error source, whic...
The differential code bias (DCB) of global navigation satellite systems (GNSSs) affects precise iono...
The estimation of differential code bias (DCB) of GPS system is one of the necessary steps for total...
Vertical total electron content (VTEC) parameters estimated using global navigation satellite system...
AbstractWhile estimating ionospheric total electron content (TEC) using both pseudorange and phase G...
The satellite and receiver differential code biases (DCB) combined, account for the main error budge...
© 2015, Science China Press and Springer-Verlag Berlin Heidelberg. Care should be taken to minimize ...
AbstractWhile estimating ionospheric total electron content (TEC) using both pseudorange and phase G...
The ionosphere has the largest contribution to the Global Navigation Satellite System (GNSS) error b...
When sensing Earth's ionosphere using multiple Global Navigation Satellite Systems (GNSSs), special ...
The ionosphere has the largest contribution to the Global Navigation Satellite System (GNSS) error b...
In ionospheric modeling, the differential code biases (DCBs) are a non-negligible error source, whic...
Sensing the ionosphere with the global positioning system involves two sequential tasks, namely the ...
In ionospheric modeling, the differential code biases (DCBs) are a non-negligible error source, whic...
The differential code bias (DCB) of global navigation satellite systems (GNSSs) affects precise ion...
In ionospheric modeling, the differential code biases (DCBs) are a non-negligible error source, whic...
The differential code bias (DCB) of global navigation satellite systems (GNSSs) affects precise iono...
The estimation of differential code bias (DCB) of GPS system is one of the necessary steps for total...
Vertical total electron content (VTEC) parameters estimated using global navigation satellite system...
AbstractWhile estimating ionospheric total electron content (TEC) using both pseudorange and phase G...