In satellite navigation, the key to high precision is to make use of the carrier-phase measurements. The periodicity of the carrier-phase, however, leads to integer ambiguities. Often, resolving the full set of ambiguities cannot be accomplished for a given reliability constraint. In that case, it can be useful to resolve a subset of ambiguities. The selection of the subset should be based not only on the stochastic system model but also on the actual measurements from the tracking loops. This paper presents a solution to the problem of joint subset selection and ambiguity resolution. The proposed method can be interpreted as a generalized version of the class of integer aperture estimators. Two specific realizations of this new class of es...
Carrier phase integer ambiguity resolution is the key to high precision Global Navigation Satellite ...
Global Navigation Satellite Systems (GNSS)-based observation systems can provide high precision posi...
Successful integer carrier-phase ambiguity resolution is crucial for high precision GNSS application...
GNSS carrier phase ambiguity resolution is the key to fast and high-precision satellite positioning ...
In this contribution, we introduce a new bootstrap-based method for Global Navigation Satellite Syst...
The LAMBDA method is very suitable for Multi-Carrier Ambiguity Resolution (MCAR), which is of intere...
GNSS carrier phase ambiguity resolution is the key to fast and high-precision satellite positioning ...
In (Teunissen, 2003) we introduced the class of integer aperture (IA) estimators. This class is larg...
GNSS carrier phase ambiguity resolution is the key to fast and high- precision satellite positioning...
The principle of positioning with the Global Positioning System (GPS) is based on determining the di...
Abstract. In this invited contribution a brief review will be presented of the integer estimation th...
GNSS carrier phase observations are fundamental for safety-critical applications where the requireme...
In Global navigation satellite system (GNSS) data processing, integer ambiguity acceptance test is c...
Carrier phase observations are required for high accuracy positioning with Global Navigation Satelli...
Global Navigation Satellite System (GNSS) carrier phase ambiguity resolution is the process of resol...
Carrier phase integer ambiguity resolution is the key to high precision Global Navigation Satellite ...
Global Navigation Satellite Systems (GNSS)-based observation systems can provide high precision posi...
Successful integer carrier-phase ambiguity resolution is crucial for high precision GNSS application...
GNSS carrier phase ambiguity resolution is the key to fast and high-precision satellite positioning ...
In this contribution, we introduce a new bootstrap-based method for Global Navigation Satellite Syst...
The LAMBDA method is very suitable for Multi-Carrier Ambiguity Resolution (MCAR), which is of intere...
GNSS carrier phase ambiguity resolution is the key to fast and high-precision satellite positioning ...
In (Teunissen, 2003) we introduced the class of integer aperture (IA) estimators. This class is larg...
GNSS carrier phase ambiguity resolution is the key to fast and high- precision satellite positioning...
The principle of positioning with the Global Positioning System (GPS) is based on determining the di...
Abstract. In this invited contribution a brief review will be presented of the integer estimation th...
GNSS carrier phase observations are fundamental for safety-critical applications where the requireme...
In Global navigation satellite system (GNSS) data processing, integer ambiguity acceptance test is c...
Carrier phase observations are required for high accuracy positioning with Global Navigation Satelli...
Global Navigation Satellite System (GNSS) carrier phase ambiguity resolution is the process of resol...
Carrier phase integer ambiguity resolution is the key to high precision Global Navigation Satellite ...
Global Navigation Satellite Systems (GNSS)-based observation systems can provide high precision posi...
Successful integer carrier-phase ambiguity resolution is crucial for high precision GNSS application...