Assessment of the possibility to implement the surveillance process in the regional centers of the air traffic management system of the Russian Federation
https://doi.org/10.51955/2312-1327_2024_2_96
Abstract
Air traffic management (ATM) in regional air traffic control centers is determined by the availability of surveillance equipment that uses the radar principle of determining the coordinates of aircraft. The responsibility zones of the airspace are vast territories where the placement of radar surveillance equipment forming a single control field is not economically feasible. The presence of local areas of space with no air traffic surveillance significantly reduces the safety, regularity and efficiency of flights. The introduction of new technologies that require significantly lower economic costs needs an assessment of the possibility to use them in the relevant regional ATM centers. Therefore, an urgent scientific task is to study the possibility of using multi-position surveillance systems (MPSS) as an assessment of the accuracy characteristics and locations of system elements. The obtained research results can be applied when placing MPSS ground stations to achieve high performance indicators of the surveillance system and air traffic management as a whole.
About the Authors
V. V. ErokhinRussian Federation
Vyacheslav V. Erokhin, Doctor of Technical Science
3, Kommunarov, Irkutsk, 664047
B. V. Lezhankin
Russian Federation
Boris V. Lezhankin, Candidate of Technical Sciences, Associate Professor
3, Kommunarov, Irkutsk, 664047
D. Y. Urbansky
Russian Federation
Dmitry Y. Urbansky
57, Borodina, Irkutsk, 664056
References
1. Bolelov E. A. (2021). Methods and algorithms of complex processing of meteorological information in meteorological support of flights of civil aviation aircraft: Special'nost' 05.22.14 Ekspluataciya vozdushnogo transporta: dissertaciya na soiskanie uchenoj stepeni doktora tekhnicheskih nauk. 2021. 421 p. EDN RAOAVI. (in Russian)
2. Bolelov E. A., Lezhankin B. V., Erokhin V. V., Mezhetov M. A. (2023). Study of the accuracy characteristics of the wide-area multi-position surveillance system of the Irkutsk regional center for air traffic management. Vestnik Sankt-Peterburgskogo gosudarstvennogo universiteta grazhdanskoj aviacii. 3(40): 89-101. EDN LKMFMX. (in Russian)
3. Bolelov E. A., Gevak N. V., Erokhin V. V., [et al.]. (2023). Air transport surveillance systems. Specific means of observation. Multi-position surveillance systems. Moscow: ID Akademii Zhukovskogo. 80 p. EDN UPSCGQ. (in Russian)
4. Borisov E. G., Shestakov, I. N. (2022). Calculation of the coordinates of a radio emission source by a multi-position passive location system based on difference-rangefinder and energy determinations. Nauchnyj vestnik GosNII GA. 40: 41-51. EDN YTPDQB. (in Russian)
5. Erokhin V. V., Lezhankin B. V., Portnova T. Yu., Povarenkin N. V. (2021). Determining the location of an aircraft in a multi-position surveillance system based on multilateration technology. Aktual'nye problemy i perspektivy razvitiya grazhdanskoj aviacii: sbornik trudov X Mezhdunarodnoj nauchno-prakticheskoj konferencii, Irkutsk, 14–15 oktyabrya 2021 goda. Tom 2. Irkutsk: Irkutskij filial federal'nogo gosudarstvennogo byudzhetnogo obrazovatel'nogo uchrezhdeniya vysshego obrazovaniya «Moskovskij gosudarstvennyj tekhnicheskij universitet grazhdanskoj aviacii». 92-105. EDN QPUUJP. (in Russian)
6. Lezhankin B. V., Erokhin V. V., Maryukhnenko V. S. (2019). System analysis of the problem of determining the location of the aircraft in the multiposital observation system. Informacionnye tekhnologii i matematicheskoe modelirovanie v upravlenii slozhnymi sistemami. 1(2): 46-61. EDN ZDOOGT. (in Russian)
7. Logvin A. I., Babich A. A. (2009). Integration of the Russian Air Navigation System into the global ATM system. Nauchnyj vestnik Moskovskogo gosudarstvennogo tekhnicheskogo universiteta grazhdanskoj aviacii. 139: 134-135. EDN LDHMVP. (in Russian)
8. Matveev B. V., Dubykin V. P., Kryukov D. Yu. [et al.]. (2014). Measuring the coordinates of radio emission sources with a multi-position passive difference-rangefinder system of arbitrary configuration. Vestnik Voronezhskogo gosudarstvennogo tekhnicheskogo universiteta. 5: 114-119. EDN SWENBV. (in Russian)
9. Monakov A. A. (2018). Localization algorithm for multilateration systems. Journal of the Russian Universities Radioelectronics. 4: 38-46. DOI: 10.32603/1993-8985-2018-21-4-38-46 (in Russian)
10. Patrikeev O. V. (2016). Suppression of interference in broadband communication channels. Grazhdanskaya aviaciya na sovremennom etape razvitiya nauki, tekhniki i obshchestva: Sbornik tezisov dokladov uchastnikov Mezhdunarodnoj nauchno-tekhnicheskoj konferencii, posvyashchennoj 45-letiyu Universiteta, Moscow: Akademiya imeni N.E. Zhukovskogo. 145. EDN XBAODD (in Russian)
11. Proekt Strategii razvitiya Aeronavigacionnoj sistemy Rossii do 2030 goda. (2021). Guidance documents, information and analytical material, FGUP «Goskorporaciya po OrVD» (in Russian)
12. Skrypnik O. N., Patrikeev O. V., Astrakhantseva N. G. (2014). Suppression of interference in broadband UHF radio channels. Nauchnyj vestnik Moskovskogo gosudarstvennogo tekhnicheskogo universiteta grazhdanskoj aviacii. 209: 129-135. EDN SXXTOH (in Russian)
13. Turintsev S. V., Turintseva M. S. (2022). Software implementation of the algorithm for encoding and decoding the location of aircraft in the discrete-addressable mode of secondary radar. Aktual'nye problemy i perspektivy razvitiya grazhdanskoj aviacii: Sbornik trudov XI Mezhdunarodnoj nauchno-prakticheskoj konferencii Irkutsk: Irkutskij filial federal'nogo gosudarstvennogo byudzhetnogo obrazovatel'nogo uchrezhdeniya vysshego obrazovaniya "Moskovskij gosudarstvennyj tekhnicheskij universitet grazhdanskoj aviacii". 115-121. EDN YGUUUY. (in Russian)
14. Using a MLAT Surveillance System to Locate Unmanned Aerial Vehicles Flying as a Swarm / E. A. Bolelov, B. V. Lezhankin, V. V. Erokhin, S. A. Zyabkin // 2022 XIX Technical Scientific Conference on Aviation Dedicated to the Memory of N.E. Zhukovsky (TSCZh). 2022. pp. 67-70. DOI 10.1109/TSCZh55469.2022.9802475.
15. Zhuravlev A. V., Kiryushkin V. V., Korovin A. V., Savin D. I. (2022). Synthesis of multi-position radar systems based on a network of specialized emitters. Uspekhi sovremennoj radioelektroniki. 4: 47-55. DOI: 10.18127/j00338486-201807-21. EDN OQAAER. (in Russian)
Review
For citations:
Erokhin V.V., Lezhankin B.V., Urbansky D.Y. Assessment of the possibility to implement the surveillance process in the regional centers of the air traffic management system of the Russian Federation. Crede Experto: transport, society, education, language. 2024;(2):96-118. (In Russ.) https://doi.org/10.51955/2312-1327_2024_2_96
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