Journal Achievements of Modern Radioelectronics №12 for 2025 year
Satellite communication channels with unmanned aerial vehicles

L.M. Zhuravleva1, A.V.Gorelik2, N.M. Legkiy3, D.A. Abakumov4

1–4 Russian University of Transport (RUT(MIIT)) (Moscow, Russia)
1zhlubov@mail.ru, 2agorelik@yandex.ru, 3legki@rambler.ru, 4dm-abakumov@mail.ru

6-12
Assessment of the impact of adverse factors of the space environment on the functioning of spacecraft

V.O. Skripachev1, A.N. Dementev2, S.V. Litvinov3, K.A. Gaidukov4

1–4 MIREA – Russian University of Technology (Moscow, Russia)

1 skripachev@mirea.ru, 2 dementev@mirea.ru, 3 litvinov_s@mirea.ru, 4 gajdukov@mirea.ru

13-17
Simulation of protective shielding structures in the conditions of ionizing radiation from outer space

A.A. Dvilyansky1

1, 2 MIREA – Russian University of Technology (Moscow, Russia)
1 dvilyanskiy@mirea.ru

18-23
Divergence of relative satellite trajectories during a short maneuver

G.G. Bulychev1, V.B. Fedorov2

1,2 MIREA – Russian University of Technology (Moscow, Russia)
1 geo-bulychev@mail.ru, 2 fdorov@mail.ru

24-31
The use of cognitive electronic warfare is expanding the boundaries

E.V. Kalyabin1, S.N. Zamuruev2

1 JSC “TSNRTI named after academician A.I. Berg” (Moscow, Russia)
2 MIREA – Russian University of Technology (Moscow, Russia)
1 post@cnirti.ru

32-38
Detection of control signals for unmanned aerial vehicles using neural networks

S.N. Zamuruev1, M.V. Cvetkov2

1,2 MIREA – Russian University of Technology (Moscow, Russia)
2 maxtsv@rambler.ru

39-44
Monitoring of the situation by spatially distributed radio engineering systems

O.V. Semyonova1, S.N. Zamuruev2, V.O. Skripachev3

1–3 MIREA – Russian University of Technology (Moscow, Russia)

1 semyonova@mirea.ru, 2 zamuruev@mirea.ru, 3 skripachev@mirea.ru

45-51
Analysis of multiservice network traffic and creation of forecasting models

N.M. Legkiy1, V.D. Sokolova2, V.I. Bogomolov3, V.E. Erkhov4, A.A. Pechnikov5

1,2 Russian Open Academy of Transport (Moscow, Russia)
3 Russian State Social University (Moscow, Russia)
1,4,5 MIREA – Russian University of Technology (Moscow, Russia)
1 legki@rambler.ru

52-57
Phase distortions of the microwave signal during transmission over a fiber-optic communication line

T.N. Legkiy1, E.S. Tyurenkov2, D.P. Zelensky3, N.A. Konevtsev4

1–4 MIREA – Russian Technological University (Moscow, Russia)

1 legki@rambler.ru

58-63
Design and deploymentclosed mesh network using the developed radio device

A.P. Krasnoslobodtsev1, E.V. Samokhina2

1, 2 MIREA – Russian University of Technology (Moscow, Russia)
1 alsdir@yandex.ru, 2 samohina@mirea.ru

64-69
Testing the range of a wireless data transmission system radio channel

V.V. Elesin1, A.A. Bondar2

1,2 MIREA – Russian University of Technology (Moscow, Russia)

1 vladimiroff927@mail.ru, 2 bondar_a@mirea.ru

70-74
Comparability of ionospheric parameter measurements obtained by different observation methods

S.V. Litvinov1, E.A. Chistyakov2, Yu.A. Polevoda3

1–3 MIREA – Russian University of Technology (Moscow, Russia)

1 litvinov_s@mirea.ru, 2 chistyakov@mirea.ru, 3 polevoda@mirea.ru

75-81
Enhanced modulation depth for disordered tags in communication systems between passive RFID-tags

E.A. Chistyakov1

1 MIREA – Russian University of Technology (Moscow, Russia)

1 chistyakov@mirea.ru

82-87
Optimization of electronic redundancy by Lagrange multiplier method

T.E. Gel'fman1, R.Yu. Zaytsev2, A.P. Pirkhavka3

1–3 MIREA – Russian University of Technology (Moscow, Russia)

1 gelfman@mirea.ru, 3 pirkhavka@mirea.ru

88-94
Broadband X-band patch antenna for wireless control systems

A.A. Sudakov1

1 MIREA – Russian University of Technology (Moscow, Russia)
1 sudakov@mirea.ru

95-100