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Predicting method for the noise immunity of P-band satellite communications based on the GPS-monitoring results

A method for prediction of the noise immunity of a P-band satellite communication system under conditions of small-scale ionospheric disturbances is developed based on the results of GPS-monitoring of small-scale fluctuations in the total electronic content of the ionosphere at arbitrary elevation a...

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Главные авторы: Pashintsev, V. P., Пашинцев, В. П., Kalmykov, I. A., Калмыков, И. А., Peskov, M. V., Песков, М. В., Mikhailov, D. A., Михайлов, Д. А.
Формат: Статья
Язык:English
Опубликовано: Springer Science and Business Media Deutschland GmbH 2025
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Online-ссылка:https://dspace.ncfu.ru/handle/123456789/30515
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spelling ir-123456789-305152025-06-18T09:20:50Z Predicting method for the noise immunity of P-band satellite communications based on the GPS-monitoring results Pashintsev, V. P. Пашинцев, В. П. Kalmykov, I. A. Калмыков, И. А. Peskov, M. V. Песков, М. В. Mikhailov, D. A. Михайлов, Д. А. Energy reserve Total electronic content GPS-monitoring Ionosphere Noise immunity P-band Satellite communication Scintillation index Small-scale fluctuations A method for prediction of the noise immunity of a P-band satellite communication system under conditions of small-scale ionospheric disturbances is developed based on the results of GPS-monitoring of small-scale fluctuations in the total electronic content of the ionosphere at arbitrary elevation angles of satellite communication and navigation routes. The novelty of the proposed method and the hardware and software system for its implementation is that the prediction of changes in the noise immunity of the P-band satellite communication system is carried out for a satellite radio link with an arbitrary angle of inclination relative to the GPS radio line for monitoring of small-scale fluctuations in the total electronic content of the ionosphere and in a time mode close to real time. As a result, it was found that when small-scale ionospheric disturbances are formed within 4 min, accompanied by an increase in the scintillation index of the signal in the P-band satellite communication system (406 MHz) to an average level of 0.55, the probability of erroneous reception of signals will be 3 times higher than the permissible value (10-3). Moreover, within 20 s, when the scintillation index is reached 0.85, the probability of erroneous reception of signals may exceed the permissible value by 30 times. 2025-06-18T09:19:25Z 2025-06-18T09:19:25Z 2025 Статья Pashintsev V.P., Kalmykov I.A., Peskov M.V., Mikhailov D.A. Predicting method for the noise immunity of P-band satellite communications based on the GPS-monitoring results // GPS Solutions. - 2025. - 29 (3). - art. no. 112. - DOI: 10.1007/s10291-025-01862-4 https://dspace.ncfu.ru/handle/123456789/30515 en GPS Solutions application/pdf application/pdf Springer Science and Business Media Deutschland GmbH
institution СКФУ
collection Репозиторий
language English
topic Energy reserve
Total electronic content
GPS-monitoring
Ionosphere
Noise immunity
P-band
Satellite communication
Scintillation index
Small-scale fluctuations
spellingShingle Energy reserve
Total electronic content
GPS-monitoring
Ionosphere
Noise immunity
P-band
Satellite communication
Scintillation index
Small-scale fluctuations
Pashintsev, V. P.
Пашинцев, В. П.
Kalmykov, I. A.
Калмыков, И. А.
Peskov, M. V.
Песков, М. В.
Mikhailov, D. A.
Михайлов, Д. А.
Predicting method for the noise immunity of P-band satellite communications based on the GPS-monitoring results
description A method for prediction of the noise immunity of a P-band satellite communication system under conditions of small-scale ionospheric disturbances is developed based on the results of GPS-monitoring of small-scale fluctuations in the total electronic content of the ionosphere at arbitrary elevation angles of satellite communication and navigation routes. The novelty of the proposed method and the hardware and software system for its implementation is that the prediction of changes in the noise immunity of the P-band satellite communication system is carried out for a satellite radio link with an arbitrary angle of inclination relative to the GPS radio line for monitoring of small-scale fluctuations in the total electronic content of the ionosphere and in a time mode close to real time. As a result, it was found that when small-scale ionospheric disturbances are formed within 4 min, accompanied by an increase in the scintillation index of the signal in the P-band satellite communication system (406 MHz) to an average level of 0.55, the probability of erroneous reception of signals will be 3 times higher than the permissible value (10-3). Moreover, within 20 s, when the scintillation index is reached 0.85, the probability of erroneous reception of signals may exceed the permissible value by 30 times.
format Статья
author Pashintsev, V. P.
Пашинцев, В. П.
Kalmykov, I. A.
Калмыков, И. А.
Peskov, M. V.
Песков, М. В.
Mikhailov, D. A.
Михайлов, Д. А.
author_facet Pashintsev, V. P.
Пашинцев, В. П.
Kalmykov, I. A.
Калмыков, И. А.
Peskov, M. V.
Песков, М. В.
Mikhailov, D. A.
Михайлов, Д. А.
author_sort Pashintsev, V. P.
title Predicting method for the noise immunity of P-band satellite communications based on the GPS-monitoring results
title_short Predicting method for the noise immunity of P-band satellite communications based on the GPS-monitoring results
title_full Predicting method for the noise immunity of P-band satellite communications based on the GPS-monitoring results
title_fullStr Predicting method for the noise immunity of P-band satellite communications based on the GPS-monitoring results
title_full_unstemmed Predicting method for the noise immunity of P-band satellite communications based on the GPS-monitoring results
title_sort predicting method for the noise immunity of p-band satellite communications based on the gps-monitoring results
publisher Springer Science and Business Media Deutschland GmbH
publishDate 2025
url https://dspace.ncfu.ru/handle/123456789/30515
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