Comparison of the atomic clock orientational error in on-board equipment of Galileo, GPS and BeiDou satellite systems

Author:

Lozov R K

Abstract

Abstract An assessment of the influence of the orientational frequency shift of an optically pumped quantum standard with a gas cell in the total error of the navigation systems Galileo, GPS and BeiDou satellites ephemeris is presented. A comparison of the calculated and experimental data of the time dependencies of the orientation errors for different working magnetic field values and directions is shown. For a numerical estimate of the orientational error influence on the ephemeris of different satellites, the values of the correlation coefficients between the calculated and the experimental dependencies on time are presented.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference16 articles.

1. Comparison of orientational error of an optically pumped quantum sensor in on-board equipment of Galileo and GPS satellite systems;Lozov;J. Phys. Conf. Ser.,2019

2. Gnss integrity monitoring in case of a priori uncertainty about user’s coordinates;Rachitskaya,2018

3. Optimum Array Processing with Unknown Attitude Parameters for GNSS Anti-Spoofing Integrity Monitoring;Melikhova,2018

4. Algorithms of GNSS signal processing based on the generalized maximum likelihood criterion for attitude determination;Tsikin,2018

5. Decision-making algorithms based on generalized likelihood ratio test for angle-of-arrival GNSS integrity monitoring 2018;Melikhova

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