Carrier phase ambiguity resolution is the key to high-precision global navigation satellite system(GNSS) positioning and navigation. It applies to a great variety of current and future models of GPS,modernized GPS and Galileo. The so-called ‘fixed’ baseline estimator is known to be superior to its ‘float’ counterpart in the sense that its probability of being close to the unknown but true baseline is larger than that of the ‘float’ baseline, provided that the ambiguity success rate is sufficiently close to its maximum value of one. Although this is a strong result, the necessary condition on the success rate does not make it hold for all measurement scenarios. It is discussed whether or not it is possible to take advantage of the integer na...
A novel Bayesian technique for the joint estimation of real and integer parameters in a linear measu...
A theorem of Teunissen (1999) states that the integer least-squares estimator mazimizes the probabil...
Successful integer estimation of carrier phase ambiguities of Global Navigation Satellite Systems (G...
Carrier phase integer ambiguity resolution is the key to high precision Global Navigation Satellite ...
Carrier phase integer ambiguity resolution is the key to high precision Global Navigation Satellite ...
The key to high precision parameter estimation in global navigation satellite system (GNSS) applicat...
This contribution extends the theory of integer equivariant estimation (Teunissen in J Geodesy 77:40...
GNSS carrier phase ambiguity resolution is the key to fast and high-precision satellite positioning ...
The key to precise global navigation satellite system (GNSS) positioning is carrier phase integer am...
The goal of ambiguity resolution is to make optimal use of the integerness of the ambiguities, and i...
Abstract. In this invited contribution a brief review will be presented of the integer estimation th...
Carrier phase ambiguity resolution is the key to high precision Global Navigation Satellite System (...
In Teunissen (1999) we introduced the class of admissible integer estimators. Members from this clas...
The principle of positioning with the Global Positioning System (GPS) is based on determining the di...
Global Navigation Satellite System (GNSS) carrier phase ambiguity resolution is the process of resol...
A novel Bayesian technique for the joint estimation of real and integer parameters in a linear measu...
A theorem of Teunissen (1999) states that the integer least-squares estimator mazimizes the probabil...
Successful integer estimation of carrier phase ambiguities of Global Navigation Satellite Systems (G...
Carrier phase integer ambiguity resolution is the key to high precision Global Navigation Satellite ...
Carrier phase integer ambiguity resolution is the key to high precision Global Navigation Satellite ...
The key to high precision parameter estimation in global navigation satellite system (GNSS) applicat...
This contribution extends the theory of integer equivariant estimation (Teunissen in J Geodesy 77:40...
GNSS carrier phase ambiguity resolution is the key to fast and high-precision satellite positioning ...
The key to precise global navigation satellite system (GNSS) positioning is carrier phase integer am...
The goal of ambiguity resolution is to make optimal use of the integerness of the ambiguities, and i...
Abstract. In this invited contribution a brief review will be presented of the integer estimation th...
Carrier phase ambiguity resolution is the key to high precision Global Navigation Satellite System (...
In Teunissen (1999) we introduced the class of admissible integer estimators. Members from this clas...
The principle of positioning with the Global Positioning System (GPS) is based on determining the di...
Global Navigation Satellite System (GNSS) carrier phase ambiguity resolution is the process of resol...
A novel Bayesian technique for the joint estimation of real and integer parameters in a linear measu...
A theorem of Teunissen (1999) states that the integer least-squares estimator mazimizes the probabil...
Successful integer estimation of carrier phase ambiguities of Global Navigation Satellite Systems (G...