peer reviewedInteger ambiguity resolution at a single receiver can be implemented by applying improved satellite products where the fractional-cycle biases (FCBs) have been separated from the integer ambiguities in a network solution. One method to achieve these products is to estimate the FCBs by averaging the fractional parts of the float ambiguity estimates, and the other is to estimate the integer-recovery clocks by fixing the undifferenced ambiguities to integers in advance. In this paper, we theoretically prove the equivalence of the ambiguity-fixed position estimates derived from these two methods by assuming that the FCBs are hardware-dependent and only they are assimilated into the clocks and ambiguities. To verify this equivalence...
Conventional Precise Point Positioning (PPP) has always required a relatively long initialization pe...
The generation and use of GNSS analysis products that allowparticularly for the needs of single-rece...
peer reviewedRecent progress in integer ambiguity resolution at a single station has made it possibl...
Integer ambiguity resolution at a single receiver can be implemented by applying improved satellite ...
GPS precise point positioning (PPP) has been used in many scientific and commercial applications due...
A large number of researches suggest that integer ambiguity resolution(IAR) significantly improve th...
Global Navigation Satellite Systems (GNSSs) have been widely used in surveying, geodesy and navigati...
Abstract—Real-time decimeter accuracy GPS positioning can be achieved using carrier phase measuremen...
peer reviewedPrecise Point Positioning (PPP) has become a recognized and powerful tool for scientifi...
“Pass-by-pass” or “track-to-track” ambiguity resolution removes Global Navigation Satellite System (...
Precise point positioning (PPP) technology is mostly implemented with an ambiguity-float solution. I...
This paper describes a method of processing Global Positioning System (GPS) observations to achieve ...
With the development of ambiguity resolution for precise point positioning(PPP) in recent years, it ...
Integer ambiguity resolution is the process of estimating the unknown ambiguities of carrier-phase o...
peer reviewedInteger ambiguity resolution at a single station can be preformed if the fractional-cyc...
Conventional Precise Point Positioning (PPP) has always required a relatively long initialization pe...
The generation and use of GNSS analysis products that allowparticularly for the needs of single-rece...
peer reviewedRecent progress in integer ambiguity resolution at a single station has made it possibl...
Integer ambiguity resolution at a single receiver can be implemented by applying improved satellite ...
GPS precise point positioning (PPP) has been used in many scientific and commercial applications due...
A large number of researches suggest that integer ambiguity resolution(IAR) significantly improve th...
Global Navigation Satellite Systems (GNSSs) have been widely used in surveying, geodesy and navigati...
Abstract—Real-time decimeter accuracy GPS positioning can be achieved using carrier phase measuremen...
peer reviewedPrecise Point Positioning (PPP) has become a recognized and powerful tool for scientifi...
“Pass-by-pass” or “track-to-track” ambiguity resolution removes Global Navigation Satellite System (...
Precise point positioning (PPP) technology is mostly implemented with an ambiguity-float solution. I...
This paper describes a method of processing Global Positioning System (GPS) observations to achieve ...
With the development of ambiguity resolution for precise point positioning(PPP) in recent years, it ...
Integer ambiguity resolution is the process of estimating the unknown ambiguities of carrier-phase o...
peer reviewedInteger ambiguity resolution at a single station can be preformed if the fractional-cyc...
Conventional Precise Point Positioning (PPP) has always required a relatively long initialization pe...
The generation and use of GNSS analysis products that allowparticularly for the needs of single-rece...
peer reviewedRecent progress in integer ambiguity resolution at a single station has made it possibl...