A novel instantaneous method for GNSS attitude determination utilising a new phase-difference ambiguity resolution approach is presented. A tripleantenna receiver configuration with baseline constraints is exploited for ambiguity resolution. It is shown that the ambiguity resolution and attitude determination problems can be solved using simple closed and semi-closed form solutions, without using GNSS codes. Simulation results demonstrate high success rates (> 90%) in most cases, even when the number of visible satellite vehicles is small.University College Dubli
Attitude determination through the use of Global Navigation Satellite System (GNSS) signals is one o...
When the receivers of GPS, GLONASS, COMPASS and other such systems are equipped with multiple antenn...
When the receivers of GPS, GLONASS, COMPASS and other such systems are equipped with multiple antenn...
Carrier phase integer ambiguity resolution is the key to fast and high-precision GNSS positioning an...
Traditionally the relative positioning and attitude determination problem are treated as independent...
Traditionally the relative positioning and attitude determination problem are treated as independent...
Global Navigation Satellite System (GNSS) is a valuable technology for a large number of maritime ap...
Attitude Determination (AD) of a spacecraft using the phase measurements of the Global Navigation Sa...
A multi-antenna-based GNSS receiver is capable of providing high-precision and drift-free attitude s...
Attitude determination through the use of Global Navigation Satellite System (GNSS) signals is one o...
Attitude determination through the use of Global Navigation Satellite System (GNSS) signals is one o...
GNSS-based attitude determination is a viable technique with a large spectrum of applications. Attit...
In this contribution a new approach to ambiguity resolution for Global Navigation Satellite System (...
Traditionally the relative positioning and attitude determination problem are treated as independent...
When the receivers of GPS, GLONASS and other such systems are equipped with multiple antennas, they ...
Attitude determination through the use of Global Navigation Satellite System (GNSS) signals is one o...
When the receivers of GPS, GLONASS, COMPASS and other such systems are equipped with multiple antenn...
When the receivers of GPS, GLONASS, COMPASS and other such systems are equipped with multiple antenn...
Carrier phase integer ambiguity resolution is the key to fast and high-precision GNSS positioning an...
Traditionally the relative positioning and attitude determination problem are treated as independent...
Traditionally the relative positioning and attitude determination problem are treated as independent...
Global Navigation Satellite System (GNSS) is a valuable technology for a large number of maritime ap...
Attitude Determination (AD) of a spacecraft using the phase measurements of the Global Navigation Sa...
A multi-antenna-based GNSS receiver is capable of providing high-precision and drift-free attitude s...
Attitude determination through the use of Global Navigation Satellite System (GNSS) signals is one o...
Attitude determination through the use of Global Navigation Satellite System (GNSS) signals is one o...
GNSS-based attitude determination is a viable technique with a large spectrum of applications. Attit...
In this contribution a new approach to ambiguity resolution for Global Navigation Satellite System (...
Traditionally the relative positioning and attitude determination problem are treated as independent...
When the receivers of GPS, GLONASS and other such systems are equipped with multiple antennas, they ...
Attitude determination through the use of Global Navigation Satellite System (GNSS) signals is one o...
When the receivers of GPS, GLONASS, COMPASS and other such systems are equipped with multiple antenn...
When the receivers of GPS, GLONASS, COMPASS and other such systems are equipped with multiple antenn...