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Journal Radioengineering №2 for 2026 г.
Article in number:
Method for estimating frequency and time parameters of narrow-band signals with a priori control and synchronization sections
Type of article: scientific article
DOI: https://doi.org/10.18127/j00338486-202602-02
UDC: 621.396.67
Authors:

M.L. Gubenko, A.A. Kostin, V.A. Kostin, A.M. Petrov, A.Yu. Matus

Abstract:

The design principles of modern digital communication systems imply the extensive use of gain and synchronization control sections in signals to improve the quality of communication channels. This approach enables the use of correlation methods for signal processing and parameter determination. Currently, methods for correlation (optimal) measurement of frequency and time parameters using radio monitoring are limited in their implementation. Signal parameter measurement is one of the most rapidly developing areas of scientific research, typically addressing the challenge of achieving maximum permissible values ​​for the accuracy and noise immunity of measurements.

Pages: 13-18
For citation

Gubenko M.L., Kostin A.A., Kostin V.A., Petrov A.M., Matus A.Yu. Method for estimating frequency and time parameters of narrow-band signals with a priori control and synchronization sections. Radiotekhnika. 2026. V. 90. № 2. P. 13−18. DOI: https://doi.org/10.18127/j00338486-202602-02 (In Russian)

References
  1. Emelin V.I., Fedotov A.A. Tehnologii radiojelektronnogo monitoringa v sistemah vooruzhenija i voennoj tehniki VMF. SPb: Otraslevye zhurnaly. 2017. 120 s. (in Russian).
  2. Dvojris L.I., Ivanov V.A., Krjukov I.N. Reshenie zadach obnaruzhenija i raspoznavanija po szhatym izmerenijam signalov. Radiotehnika. 2025. T. 89. № 2. S. 5−11. DOI: https://doi.org/10.18127/j00338486-202502-01 (in Russian).
  3. Djatlov A.P., Kul'bikajan B.H. Korreljacionnaja obrabotka shirokopolosnyh signalov v avtomatizirovannyh kompleksah radiomonitoringa. M: Gorjachaja -Telekom. 2017. 332 s. (in Russian).
  4. Johnson E.E., Koski E., et al. Third-generation and wideband HF radio communications. Boston/London: Artech House. 2013.
  5. Avramchuk V.S., Faerman V.A. Algoritm vychislenija normirovannoj chastotno-vremennoj korreljacionnoj funkcii. Programmnye sistemy i vychislitel'nye metody. 2017. № 4. S. 45–52 (in Russian).
  6. Pankratov V.G., Karih A.A. i dr. Vychislenie funkcii neopredelennosti dlja passivnoj lokacii na PLIS i graficheskom processore. Cifrovaja obrabotka signalov. 2014. № 1. S. 56–65 (in Russian).
  7. Maks Zh. Metody i tehnika obrabotki signalov pri fizicheskih izmerenijah: Per. s franc. T. 2. M: Mir. 1983. 256 s.
  8. Berdyshev V.P., Garin E.N. i dr. Radiolokacionnye sistemy: Uchebnik. Pod obshh. red. V.P. Berdysheva. Krasnojarsk: Sib. feder. un-t. 2011. 400 s. (in Russian).
  9. Rembovskij A.M., Ashihmin A.V., Koz'min V.A. Radiomonitoring: zadachi, metody, sredstva. Pod red. A.M. Rembovskogo. Izd. 4-e, ispr. M.: Gorjachaja linija – Telekom. 2018. 640 s. (in Russian).
Date of receipt: 29.12.2025
Approved after review: 13.01.2026
Accepted for publication: 28.01.2026