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Assessment of information support quality by “friend or foe” identification systems

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
PL
Ocena jakości informacji za pomocą systemów identyfikacji "przyjaciel czy wróg"
Języki publikacji
EN
Abstrakty
EN
Based on the assessment of the aircraft responders and ground-based radio transponders noise immunity it is shown that the identification “friend-or-foe” systems have a low quality of informational support of the air space control system due to the openness of the interrogation channel and, as a consequence, the possibility of the concerned party to influence on the quality of operation of the aircraft responder due to the radiation of simulated interrogation signals of the simulation steady mode.
PL
W oparciu o ocenę odporności na zakłócenia transponderów statków powietrznych i naziemnych transponderów radiowych wykazano, że systemy identyfikacji "przyjaciel-nieprzyjaciel" mają niską jakość informacyjnego wsparcia systemu kontroli przestrzeni powietrznej ze względu na otwartość kanału zapytania, a w konsekwencji możliwość, aby zainteresowana strona wpłynęła na jakość działania statku powietrznego odpowiadającego na promieniowanie symulowanych sygnałów zapytania w symulacji w trybie ustalonym.
Rocznik
Strony
127--131
Opis fizyczny
Bibliogr. 32 poz., wykr.
Twórcy
  • Kharkiv National University of Radio Electronics, Nauky Ave, 14, Kharkiv, 61000 Ukraina
  • Kharkiv National University of Radio Electronics, Nauky Ave, 14, Kharkiv, 61000 Ukraina
  • National Technical University "Kharkiv Polytechnic Institute", Kyrpychova str., 2, Kharkiv, 61002, Ukraine
  • I. Horbachevsky Ternopil State Medical University
  • Lublin University of Technology, Institute of Electronics and Information Technology, Nadbystrzycka 38A, 20-618 Lublin, Poland
  • Almaty University of Power Engineering and Telecommunications (AUPET)
  • Al- Farabi Kazakh National University, Almaty, Kazakhstan
Bibliografia
  • [1] Farina А. and Studer F., Digital radar data processing, Radio i svyaz, Moscow 1993.
  • [2] Оbod, І.І., Strelnitskyi, О.О., and Аndrusevich, V.А., Informational network of aerospace surveillance systems, KhNURE, Kharkov 2015.
  • [3] Obod I.I., Svid I.V., Shtih I.A., Interference protection of questionable airspace surveillance systems: monograph. KhNURE, Kharkiv 2014.
  • [4] Stevens M.C., Secondary Surveillance Radar, Artech House, 1988.
  • [5] Garcia M.L., Test For Success: Next Generation Aircraft Identification System RF Simulation, IEEE ICNS '07, 007.
  • [6] Ray P.S., A novel pulse TOA analysis technique for radar identifications, IEEE Transactions on Aerospace And Electronic systems 34(3)/1998, 716-721.
  • [7] Ahmadi Y., Mohamedpour K., Ahmadi M., Deinterleaving of Interfering Radars Signals in Identification Friend or Foe Systems, 18th Telecommunications forum TELFOR 2010, Serbia, Belgrade, November 23-25, 2010.
  • [8] Farouk H. Analysis of Changes of the Hydraulic Diameter and Determination of the Air Flow Modes in the Nasal Cavity/ H. Farouk, A.Khaleel, O. Avrunin// Advances in Intelligent and Soft Computing: Image Processing and Communications Challenges 3. Springer, 102/2011, 303-310.
  • [9] Farouk H. An attempt of the Determination of Aerodynamic Characteristics of Nasal Airways/ H. Farouk, O. Avrunin, A. Khaleel //Advances in Intelligent and Soft Computing: Image Processing and Communica-tions Challenges 3. Springer, 102/2011, 311-322.
  • [10] Avrunin O.G., Alkhoraef М., Farouk H. I. S., Tymkovich M.Y., The Surgical Navigation System with Optical Position Determination Tecnology and Sources of Errors. USA Journal of Medical Imaging and Health Informatics 5/2015, 1-8.
  • [11] Avrunin O.G., Nosova Y.V., Shuhlyapina N.O., Zlepko S.M., Tymchyk S.V., Hotra O., Imanbek B., Kalizhanova A., Mussabekova A., Principles of computer planning in the functional nasal surgery. Przegląd Elektrotechniczny 93(3)/2017, 140-143.
  • [12] Avrunin O.G., Nosova Y.V., Paliy V.G., Shushlyapina N.O., Kalimoldayev M., Komada P., Sagymbekova A., Study of the air flow mode in the nasal cavity during a forced breath. Proceedings Volume 10445, Photonics Applications in Astronomy, Communications, Industry, and High Energy Physics Experiments 2017; 104453H.
  • [13] Wojcik W, Bieganski T., Kotyra A., et al., Application of algorithms of forecasting in the optical fibre coal dust burner monitoring system, Proc. SPIE, 3189 (1997), 100-109
  • [14] Pavlov S.V., Kozhemiako V.P., Kolesnik P.F. et al., Physical principles of biomedical optics. VNTU, Vinnytsya 2010.
  • [15] Vassilenko, S Valtchev, JP Teixeira, S Pavlov. Energy harvesting: an interesting topic for education programs in engineering specialities / «Internet, Education, Science” (IES-2016) (2016), 149-156
  • [16] Pavlov S.V., Barylo A.S., Kozlovska T.I. et al., Analysis of microcirculatory disorders in inflammatory processes in the maxillofacial region on based of optoelectronic methods. Przeglad Elektrotechniczny 93(5)/2017, 114-117.
  • [17] Serkova V.K., Pavlov S.V., et al., Medical expert system for assessment of coronary heart disease destabilization based on the analysis of the level of soluble vascular adhesion molecules. Proc. SPIE 10445, Photonics Applications in Astronomy, Communications, Industry, and High Energy Physics Experiments 2017, 104453O (7 August 2017).
  • [18] Pavlov S. V., Sander S. V., Kozlovska T. I., Kaminsky A. S., Wojcik W., et al. Laser photoplethysmography in integrated evaluation of collateral circulation of lower extremities, Proc. SPIE 8698, Optical Fibers and Their Applications 2012, 869808 (January 11, 2013).
  • [19] Oleksiy D. Azarov, Oleksandr V. Dudnyk, Oleksandr V. Kaduk, Smolarz A., Burlibay A., "Method of correcting of the tracking ADC with weight redundancy conversion characteristic", Proc. SPIE 9816, Optical Fibers and Their Applications 2015, 98161V (17 December 2015).
  • [20] Olexiy D. Azarov, Olexander G. Murashchenko, Olexander I. Chernyak, Smolarz A., Kashaganova G., "Method of glitch reduction in DAC with weight redundancy", Proc. SPIE 9816, Optical Fibers and Their Applications 2015, 98161T (17 December 2015)
  • [21] O. D. Azarov, O. D. Dudnyk, M. Duk, D. Porubov, "Static and dynamic characteristics of the self-calibrating multibit ADC analog components", Proc. SPIE 8698, Optical Fibers and Their Applications 2012, 86980N (11 January 2013).
  • [22] D. Azarov, A. I. Chernyak, P. A. Chernyak, "Class of numerical systems for pipeline bit sequential development of multiple optoelectronic data streams", Proc. SPIE 4425, Selected Papers from the International Conference on Optoelectronic Information Technologies, (12 June 2001).
  • [23] Osadchuk V.S., Osadchuk A.V. The Microelectronic Radiomeasuring Transducers of Magnetic Field with a Frequency Output. Electronics and Electrical Engineering. – Kaunas: Technologija 4(110)/2011, 67-70.
  • [24] Osadchuk V.S., Osadchuk A.V. The magneticreactive effect in transistors for construction transducers of magnetic field // Electronics and Electrical Engineering. – Kaunas: Technologija, 3(109)/2011, 119-122.
  • [25] Osadchuk V.S., Osadchuk A.V. The microelectronic transducers of pressure with the frequency // Electronics and Electrical Engineering. – Kaunas: Technologija 5(121)/2012, 105-108.
  • [26] Osadchuk V.S., Osadchuk A.V. Radiomeasuring Microelectronic Transducers of Physical Quantities // Proceedings of the 2015 International Siberian Conference on Control and Communications (SIBCON). 21-23 May 2015. Omsk.
  • [27] Osadchuk A.V., Osadchuk I.A. Frequency transducer of the pressure on the basis of reactive properties of transistor structure with negative resistance // Proceedings of the 2015 International Siberian Conference on Control and Communications (SIBCON). 21-23 May 2015. Omsk.
  • [28] Vedmitskyi, Y.G., Kukharchuk, V.V., Hraniak, V.F. New non-system physical quantities for vibration monitoring of transient processes at hydropower facilities, integral vibratory accelerations // Przeglad Elektrotechniczny 93(3)/2017, 69-72.
  • [29] Vysotskaya E. V., Porvan A. P., Bespalov Yu. G., Nosov K. V., Klimenko V. A., and Trubitsyn A. A., Prognozirovanie techeniya atopicheskogo dermatita u detey s ispol'zovaniem diskretnogo modelirovaniya dinamicheskikh system. Vostochno-Evropeyskiy zhurnal peredovykh tekhnologiy, Vol.3, No 4(69)/2017, 21-25.
  • [30] Grigor'ev A. Ya., Zholtkevich G. N., Nosov K. V., Gamulya Yu. G., Bespalov Yu. G., Vysotskaya E. V., and Pecherskaya A. I.: Diskretnye modeli dinamicheskikh sistem, opredelyayushchikh stabil'nost' gidrobiotsenozov. Veterinarnaya meditsina 99/2014, 164-167.
  • [31] Borovska T., Optimal Aggregation Models for the Problem of Minimizing the Total Expenses of Multiproduct Production, Proceedings of the XI International Scientific and Technical Conference “Computer science and information technologies” CSIT’2016, Lviv, Ukraine, 6-10 September 2016 (13 October 2016). – Lviv: IEEE, 2016, 136-139, 16377666.
  • [32] Kmon P., Otfinowski P., Analiza szumowa kanału odczytowego przeznaczonego do wielokanałowych układów scalonych dedykowanych do eksperymentów neurobiologicznych. Informatyka Automatyka i Pomiary w Gospodarce i Ochronie Środowiska IAPGOŚ 3(1)/2013, 21-23.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-66dd5ba7-e142-45d9-bf2e-d7f97d7884ed
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