The passive hydrogen maser of GIOVE-B and the new GPS Block IIF Rubidium clock have demonstrated a superior stability in ground tests. In practice, however, the apparent clock performance for GNSS users is limited by measurement errors and imperfections of the signal chain that affect the clock variance at different time scales. Within this paper, we provide a direct comparison of the apparent clock performance for GIOVE-B and the first Block IIF satellite (SVN62). Periodic errors in the apparent clocks of both satellites are analyzed and an effort is made to separate the impact of orbit determination errors from physical clock or line bias variations. For SVN62 an empirical clock correction model is discussed, which offers a notable reduct...
Passive Hydrogen Maser (PHM) and Rubidium Atomic Frequency Standard (RAFS) are the two baseline on-b...
Passive Hydrogen Maser (PHM) and Rubidium Atomic Frequency Standard (RAFS) are the two baseline on-b...
Abstract: The signal transmission and position quality obtained by GNSS positioning directly depends...
The Block IIF satellites feature a new generation of high-quality rubidium clocks for time and frequ...
A characterization of the short-term stability of the atomic frequency standards onboard GNSS satell...
Atomic clocks are fundamental elements of a Global Navigation Satellite System (GNSS). Currently, se...
In Global Navigation Satellite Systems (GNSS), the on-board clocks are a key component from which ti...
Atomic clocks are fundamental elements of a Global Navigation Satellite System (GNSS). Currently, se...
Time synchronization is one of the main applications of Global Navigation Satellite System (GNSS). I...
Abstract The Block IIF satellites feature a new genera-tion of high-quality rubidium clocks for time...
In Global Navigation Satellite Systems (GNSS) the role of atomic clocks is essential for the determi...
In Global Navigation Satellite Systems (GNSS) the role of atomic clocks is essential for the determi...
Atomic clocks employed onboard satellites are one of the basic elements of Global Navigation Satelli...
Atomic clocks employed onboard satellites are one of the basic elements of Global Navigation Satelli...
Atomic clocks employed onboard satellites are one of the basic elements of Global Navigation Satelli...
Passive Hydrogen Maser (PHM) and Rubidium Atomic Frequency Standard (RAFS) are the two baseline on-b...
Passive Hydrogen Maser (PHM) and Rubidium Atomic Frequency Standard (RAFS) are the two baseline on-b...
Abstract: The signal transmission and position quality obtained by GNSS positioning directly depends...
The Block IIF satellites feature a new generation of high-quality rubidium clocks for time and frequ...
A characterization of the short-term stability of the atomic frequency standards onboard GNSS satell...
Atomic clocks are fundamental elements of a Global Navigation Satellite System (GNSS). Currently, se...
In Global Navigation Satellite Systems (GNSS), the on-board clocks are a key component from which ti...
Atomic clocks are fundamental elements of a Global Navigation Satellite System (GNSS). Currently, se...
Time synchronization is one of the main applications of Global Navigation Satellite System (GNSS). I...
Abstract The Block IIF satellites feature a new genera-tion of high-quality rubidium clocks for time...
In Global Navigation Satellite Systems (GNSS) the role of atomic clocks is essential for the determi...
In Global Navigation Satellite Systems (GNSS) the role of atomic clocks is essential for the determi...
Atomic clocks employed onboard satellites are one of the basic elements of Global Navigation Satelli...
Atomic clocks employed onboard satellites are one of the basic elements of Global Navigation Satelli...
Atomic clocks employed onboard satellites are one of the basic elements of Global Navigation Satelli...
Passive Hydrogen Maser (PHM) and Rubidium Atomic Frequency Standard (RAFS) are the two baseline on-b...
Passive Hydrogen Maser (PHM) and Rubidium Atomic Frequency Standard (RAFS) are the two baseline on-b...
Abstract: The signal transmission and position quality obtained by GNSS positioning directly depends...