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Communication

Experimental Estimation of Deviation Frequency within the Spectrum of Scintillations of the Carrier Phase of GNSS Signals

by
Vladislav Demyanov
1,*,
Ekaterina Danilchuk
2,
Yury Yasyukevich
1 and
Maria Sergeeva
3,4
1
Institute of Solar Terrestrial Physics, Siberian Branch, Russian Academy of Sciences, 664033 Irkutsk, Russia
2
Department of Physics, Irkutsk State University, 664003 Irkutsk, Russia
3
SCiESMEX, LANCE, Instituto de Geofisica, Unidad Michoacan, Universidad Nacional Autonoma de Mexico, Antigua Carretera a Patzcuaro 8701, Morelia 58089, Mexico
4
CONACYT, Instituto de Geofisica, Unidad Michoacan, Universidad Nacional Autonoma de Mexico, Antigua Carretera a Patzcuaro 8701, Morelia 58089, Mexico
*
Author to whom correspondence should be addressed.
Remote Sens. 2021, 13(24), 5017; https://doi.org/10.3390/rs13245017
Submission received: 2 November 2021 / Revised: 1 December 2021 / Accepted: 6 December 2021 / Published: 10 December 2021
(This article belongs to the Special Issue GNSS High Rate Data for Research of the Ionosphere)

Abstract

The term deviation frequency (fd) denotes the boundary between the variable part of the amplitude and phase scintillation spectrum and the part of uninformative noises. We suggested the concept of the “characteristic deviation frequency” during the observation period. The characteristic deviation frequency is defined as the most probable value of the deviation frequency under current local conditions. Our case study involved GPS, GLONASS, Galileo and SBAS data under quiet and weakly disturbed geomagnetic conditions (geomagnetic storm on 16 April 2021, Kpmax = 5, SYM-Hmin = −57 nT) at the mid-latitude GNSS station. Our results demonstrated that the deviation frequency for all signal components of GPS, GLONASS and Galileo varies within 15–22 Hz. The characteristic deviation frequency was 20 Hz for the mentioned GNSS signals. The SBAS differs from other systems: deviation frequency varies within 13–20 Hz. The characteristic deviation frequency is lower and equal to 18 Hz. We suggest the characteristic deviation frequency to determine the optimal sampling rate of the GNSS carrier phase data for the ionospheric studies. In turn, the deviation frequency can be considered as a promising index to estimate the boundary of non-variability of the ionosphere.
Keywords: ionosphere; scintillations; carrier phase; GNSS; GPS; GLONASS; Galileo; SBAS; GNSS signals; deviation frequency ionosphere; scintillations; carrier phase; GNSS; GPS; GLONASS; Galileo; SBAS; GNSS signals; deviation frequency

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MDPI and ACS Style

Demyanov, V.; Danilchuk, E.; Yasyukevich, Y.; Sergeeva, M. Experimental Estimation of Deviation Frequency within the Spectrum of Scintillations of the Carrier Phase of GNSS Signals. Remote Sens. 2021, 13, 5017. https://doi.org/10.3390/rs13245017

AMA Style

Demyanov V, Danilchuk E, Yasyukevich Y, Sergeeva M. Experimental Estimation of Deviation Frequency within the Spectrum of Scintillations of the Carrier Phase of GNSS Signals. Remote Sensing. 2021; 13(24):5017. https://doi.org/10.3390/rs13245017

Chicago/Turabian Style

Demyanov, Vladislav, Ekaterina Danilchuk, Yury Yasyukevich, and Maria Sergeeva. 2021. "Experimental Estimation of Deviation Frequency within the Spectrum of Scintillations of the Carrier Phase of GNSS Signals" Remote Sensing 13, no. 24: 5017. https://doi.org/10.3390/rs13245017

APA Style

Demyanov, V., Danilchuk, E., Yasyukevich, Y., & Sergeeva, M. (2021). Experimental Estimation of Deviation Frequency within the Spectrum of Scintillations of the Carrier Phase of GNSS Signals. Remote Sensing, 13(24), 5017. https://doi.org/10.3390/rs13245017

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