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ANALYTICAL STUDY OF THE IONOSPHERE INFLUENCE ON ENERGY RELATIONS IN SATELLITE COMMUNICATION SYSTEMS BY THE METHODS OF PHYSICAL PLASMA KINETICS

https://doi.org/10.51955/2312-1327_2023_1_98

Abstract

In civil aviation, an urgent and important task is to provide air traffic participants with uninterrupted radio communication. Satellite communication is a global mobile network covering the entire surface of the Earth, including polar regions, which provides a twoway data and voice communication exchange. An analysis of the principles of functioning of satellite communication systems (SCS) showed that the determination of energy characteristics is of great importance. Energy characteristics in satellite communication channels and the level of interference determine SCS operational capabilities and quality indicators. One of the critical factors that determine the effectiveness of the SCS functioning is the conditions for the propagation and absorption of radio waves, including ionospheric phenomena, which are not yet fully understood, and this determines the research relevance.

This article is devoted to theoretical studies of the ionospheric plasma by the methods of physical kinetics to increase the energy potential of the radio links of a satellite communication system.

About the Authors

D V. Khazanov
Moscow State Technical University of Civil Aviation, Irkutsk branch
Russian Federation

Dmitry Vladimirovich Khazanov, Candidate of Physical and Mathematical Sciences

Kommunarov, 3  Irkutsk, 664047



B. V. Lezhankin
Moscow State Technical University of Civil Aviation, Irkutsk branch
Russian Federation

Boris Valentinovich Lezhankin, Candidate of Technical Sciences 

Kommunarov, 3  Irkutsk, 664047



V. V. Erokhin
Moscow State Technical University of Civil Aviation, Irkutsk branch
Russian Federation

Vyacheslav Vladimirovich Erokhin, Doctor of Technical Science 

Kommunarov, 3  Irkutsk, 664047



References

1. Anarov, M.Zh., Uteuliev, B. A., Seitov, N. B. (2013) Satellite communication systems Reshetnevskie chteniya. – Vol. 1. – pp. 161-163. – EDN SJCILB. [in Russian]

2. Arefyev, R. O., Turintsev, S. V., Turintseva M. S. (2021) The use of noise-resistant coding in the processing of messages from a local correction station Aktual'nye problemy i perspektivy razvitiya grazhdanskoj aviacii : sbornik trudov X Mezhdunarodnoj nauchno-prakticheskoj konferencii. – pp. 22-32. EDN YMDPPC. [in Russian]

3. Belozertsev, A.V., Panteleimonov, I. N., Monastyrenko, A. A. (2021) The main directions of the concept of communication organization in the satellite communication system on low-orbit repeater satellites Trudy Nauchno-issledovatel'skogo instituta radio. – Vol. 1. – pp. 33-40. – DOI 10.34832/NIIR.2021.4.1.004. – EDN TZUYHH. [in Russian]

4. Brindeev, A.V., Kulnev, E. V., Panin, G. E. (2015) The effect of radiation from mobile satellite communication systems on the operation of aviation receivers of global navigation satellite systems Kosmonavtika i raketostroenie. Vol. 2(81). – pp. 127-133. – EDN UKSSRB. [in Russian]

5. Ender, A. J., Ender, I. A. (2011) Analytical representation of linear nuclei of the collision integral of the Boltzmann equation for Maxwell molecules Pis'ma v ZHurnal tekhnicheskoj fiziki. Vol. 5. – pp. 9-14. – EDN RCVMHF. [in Russian]

6. Mezhetov, M. A., Shalaev, A. A. (2022) Implementation of the signal recognition algorithm in the monitoring system of aviation communication lines Aktual'nye problemy i perspektivy razvitiya grazhdanskoj aviacii : Sbornik trudov XI Mezhdunarodnoj nauchno-prakticheskoj konferencii. – pp. 71-79. – EDN WVIACD. [in Russian]

7. Mezhetov, M. A., Tikhova, A. I., Shalaev, A. A. (2021) Development of a virtual signal identification device for the monitoring system of aviation communication lines Aktual'nye problemy i perspektivy razvitiya grazhdanskoj aviacii : sbornik trudov X Mezhdunarodnoj nauchno-prakticheskoj konferencii. – pp. 194-201. – EDN RDGJAS. [in Russian]

8. Mingalev, O. V., Mingalev, I. V., Malova, H. V. (2017) A system of kinetic equations for describing large-scale processes in collisionless cosmic plasma Fizika plazmy. Vol. 10. – pp. 837-849. – DOI 10.7868/S036729211710002X. – EDN ZFSGCX. [in Russian]

9. Patrikeev O. V. (2017) Improving the efficiency of noise suppression during secondary processing of noise-like signals Aktual'nye problemy i perspektivy razvitiya grazhdanskoj aviacii Rossii : sbornik trudov Vserossijskoj nauchno-tekhnicheskoj konferencii. – pp. 17-22. – EDN YQBMTY. [in Russian]

10. Serebrennikov, E. A., Turintsev, S. V. (2017) E. A. Serebrennikov, S. V. Software model of digital communication line VDL mode 2 Aktual'nye problemy aviacii i kosmonavtiki. Vol. 13. – pp. 119-121. – EDN YQWFIF. [in Russian]

11. Shapovalov, A. A., Andreeva, L. E., Berlizov, I. A., Novikov, I. V. (2012) A full-scale model of Rutherford's experiment on alpha particle scattering Vestnik Altajskoj gosudarstvennoj pedagogicheskoj akademii. Vol. 13. – pp. 105-107. – EDN QAISIT. [in Russian]

12. Shelukhin, V. V., Terentyev, S. A. (2009) Homogenization of Maxwell's equations and Maxwell's variance –Wagner Doklady Akademii nauk. Vol. 3. – pp. 402-406. – EDN JVIQQJ. [in Russian]

13. Skrypnik, O. N., Arefyev, R. O. (2020) Accuracy characteristics of multi-system GPS/GLONASS/Beidou receivers Aviacionnyj vestnik. Vol. 3. – pp. 26-30. – EDN FGFORV. [in Russian]

14. Ulukhanyan A. R. (2011) Dynamic equations of the theory of thin prismatic bodies using Legendre polynomial decomposition Izvestiya Rossijskoj akademii nauk. Mekhanika tverdogo tela. Vol. 3. – pp. 161-177. – EDN NTXAJF. [in Russian]

15. Vedenyapin, V. V., Adzhiev, S. Z., Kazantseva, V. V., Melikhov, I. V. (2018) Chemical kinetics, ergodic theory and the relationship of hydrodynamic and kinetic description Materialy XII Mezhdunarodnoj konferencii po prikladnoj matematike i mekhanike v aerokosmicheskoj otrasli (NPNJ'2018). – pp. 107-108. – EDN YADFUD. [in Russian]

16. Vladimirov, V. I., Bubenchikov, A. A., Sidenko, S. V. (2012) Simultaneous measurement of signal power and noise power (interference) in the bandwidth of the main channel of the radio receiver Informacionno-izmeritel'nye i upravlyayushchie sistemy. Vol. 7. – pp. 67-73. – EDN NQLWZK. [in Russian]


Review

For citations:


Khazanov D.V., Lezhankin B.V., Erokhin V.V. ANALYTICAL STUDY OF THE IONOSPHERE INFLUENCE ON ENERGY RELATIONS IN SATELLITE COMMUNICATION SYSTEMS BY THE METHODS OF PHYSICAL PLASMA KINETICS. Crede Experto: transport, society, education, language. 2023;(1):98-117. (In Russ.) https://doi.org/10.51955/2312-1327_2023_1_98

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ISSN 2312-1327 (Online)