Precision and reliability of timescales are of importance in many situations, in particular in satellite navigation systems (i.e, Galileo system). Motivated by the necessity to improve the precision and the reliability of such clock signals, we have explored the possibility to exploit control theory in clock steering methods. First of all we provide a more robust theoretical framework for the analysis of the process. Two novel control algorithms are here proposed aiming to meet metrological specifications. Numerical simulations have been performed in order to evaluate the performances of the new control systems
Clock error estimation has been the focus of a great deal of research because of the extensive usage...
Highly accurate time and frequency synchronization is crucial for navigation. Constant improvements ...
The primary payload of a navigation satellite is its clock that is indispensable to perform precise ...
Precision and reliability of timescales are of importance in many situations, in particular in satel...
Robust, reliable and stable time scales are needed in a wide field of applications, i.e. in the Glob...
The goal of this paper is to investigate clock steering methods in the framework of control theory. ...
Global navigation satellite systems need a stable and robust system time in order to provide service...
The thesis investigates time aspects of satellite-based navigation systems to be newly developed. Al...
The development of robust and accurate time scales is a key parameter for various future application...
Time synchronization is one of the main applications of Global Navigation Satellite System (GNSS). I...
Precise timekeeping is at the basis of any Global Navigation Satellite System. In this thesis, after...
Accurate and robust time synchronization is a crucial part in the operation of any global navigation...
Global navigation satellite systems need a stable and robust system time in order to provide service...
This paper describes a GPS receiver clock model that can improve the accuracy of kinematic orbit det...
The time maintenance accuracy of the navigation constellation determines the user positioning and ti...
Clock error estimation has been the focus of a great deal of research because of the extensive usage...
Highly accurate time and frequency synchronization is crucial for navigation. Constant improvements ...
The primary payload of a navigation satellite is its clock that is indispensable to perform precise ...
Precision and reliability of timescales are of importance in many situations, in particular in satel...
Robust, reliable and stable time scales are needed in a wide field of applications, i.e. in the Glob...
The goal of this paper is to investigate clock steering methods in the framework of control theory. ...
Global navigation satellite systems need a stable and robust system time in order to provide service...
The thesis investigates time aspects of satellite-based navigation systems to be newly developed. Al...
The development of robust and accurate time scales is a key parameter for various future application...
Time synchronization is one of the main applications of Global Navigation Satellite System (GNSS). I...
Precise timekeeping is at the basis of any Global Navigation Satellite System. In this thesis, after...
Accurate and robust time synchronization is a crucial part in the operation of any global navigation...
Global navigation satellite systems need a stable and robust system time in order to provide service...
This paper describes a GPS receiver clock model that can improve the accuracy of kinematic orbit det...
The time maintenance accuracy of the navigation constellation determines the user positioning and ti...
Clock error estimation has been the focus of a great deal of research because of the extensive usage...
Highly accurate time and frequency synchronization is crucial for navigation. Constant improvements ...
The primary payload of a navigation satellite is its clock that is indispensable to perform precise ...