OPTIMISATION OF SATELLIE TELECOMMUNICATION SYSTEMS DUE TO THE SPACE CRAFT ORBIT INJECTION

Authors

  • О. V. Shefer Poltava National technical Yuri Kondratyuk University

DOI:

https://doi.org/10.18372/1990-5548.51.11668

Keywords:

Space craft, satellite telecommunications, ionospheric environment, radio communication, plasma clearing, low-temperature plasma.

Abstract

In  this  article  the  method  of  satellite  telecommunication  optimization  during   the  SC’s spacewalk  via  radio  impenetrable  ionospheric  environment  density   production  is  considered.  Power-effectual method of high-intensive artificial plasma for positive ions and negative particles in ionospheric plasma is operated; modeling and analysis of all the results are accomplished.

Author Biography

О. V. Shefer, Poltava National technical Yuri Kondratyuk University

Poltava National technical Yuri Kondratyuk University

Candidate of Science (Engineering). Associate Professor.

References

K. O. Domracheva, “General comparative evaluation of telecommunication systems noise immunity.” Naukovi zapysky Ukrayins'koho naukovo-doslidnoho instytutu zv"yazku, no. 3(43), pp. 83–89, 2016. (in Russian)

S. I. Makarenko, M. S. Ivanov, and S. A. Popov, Interference free feature of communication systems with pseudorandom reorganization of operating frequency. St. Petersburg: Svoe izdatel'stvo Publ., 2013, 166 p. (in Russian)

G. F. Konyahin, A. Yu. Melashenko, and Z. Yu. Litvina, “Device for the transfer of information from the spacecraft.” Systemy obrobky informatsiyi, no. 5(15), pp. 201–204, 2001. (in Ukrainian)

Z. Yu. Litvina, “About a possibility of information transfer through plasma.” Systemy obrobky informatsiyi, no. 9, pp. 127–128, 2007. (in Ukrainian)

G. F. Konyahin, A. Yu. Melashenko, and Z. Yu. Litvina, “Device for the transfer of information from the spacecraft.” Systemy obrobky informatsiyi, no. 5(15), pp. 201–204, 2001. (in Ukrainian)

O. V. Shefer, “The principle of pulsed plasma environment formation to improve the signals noise immunity.” Aerokosmicheskaya tekhnika i tekhnologii, Kharkov: NAU named after N. E. Zhukovskogo “KhAI,” no. 2 (137), pp. 36–43, 2017. (in Russian)

B. M. Smirnov, Theory of Gas Discharge. Plasma Springer Series on Atomic, Optical, and Plasma Physics, Switzerland, 2015, 423 p.

E. Hantzsche, “Space charge sheaths with electron emission.” Proc. 21 EPS Conf. Contr. Plasma Phys., Montpellier, 1994, Pt.II, pp. 926–929.

A. S. Kryukovskiy, D. S. Lukin, and K. S. Kiryanova, “The method of the extended bicharacteristic system in modeling the propagation of radio waves in the ionospheric plasma.” Radiotekhnika i elektronika, Moscow: Nauka, vol. 57, no 9, pp. 1028–1034, 2012. (in Russian)

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THEORY AND METHODS OF SIGNAL PROCESSING