Preview

Civil Aviation High Technologies

Advanced search

Digital technologies are the basis of digital economy of civil aviation airport refueling complexes

https://doi.org/10.26467/2079-0619-2020-23-4-20-32

Abstract

The article analyzes the main information automated control systems for refueling complexes, based on this analysis, the problems of the airport ground handling functioning are identified, the main of which are the inefficiency of managing stochastic processes that occur in failure situations, as well as the lack of automated control systems for the level of purity of aviation fuel from mechanical impurities and water. The way to upgrade Groundstar Inform GmbH - a single integrated airport management system by increasing the capabilities of the system by adding new components is proposed. A solution to the problem of multi-resource planning of aircraft refueling in high-intensity flight conditions, including failure situations, based on intelligent simulation and resource management is proposed. As well as from the point of view of optimizing the solution of business process objectives the development of planning algorithms using the mathematical apparatus of fuzzy modeling and control, fuzzy sets and fuzzy logic underlying the intelligent modeling of processes is proposed. The concept of an adaptive information management system of technological processes of a refueling complex for monitoring the purity of jet fuel, based on dynamic on-line monitoring of the existence of mechanical impurities and water is introduced. The article examines the elements of creating a "Smart Refueling Complex", in which intelligent business processes are combined into one whole due to the use of "smart" operational processes and technological equipment. The introduction of digital technologies, "industry 4.0" tools and trends in automation, digitalization and digitalization of the modern aviation fuel supply for civil aviation is becoming the basis of the digital economy of civil aviation refueling complexes.

About the Authors

A. A. Brailko
Moscow State Technical University of Civil Aviation
Russian Federation

Anatoly A. Brailko, Candidate of Technical Sciences, Doctoral Student of the Aviation Fuel Supply and Aircraft Repair Chair

Moscow



O. V. Gromov
LLC "Tupolev Service"
Russian Federation

Oleg V. Gromov, Candidate of Economic Sciences, Adviser to the Director General

Moscow



L. A. Druzhinin
VDNH State-Owned Enterprise
Russian Federation

Lev A. Druzhinin, Fuel Metering Specialist

Moscow



References

1. Pegat, A. (2001). Fuzzy modeling and control. Physica-Verlag Heidelberg, 728 p. DOI: 10.1007/978-3-7908-1824-6

2. Zade, L.A. (1976). The concept of a linguistic variable and its application to approximate reasoning. Moscow: Mir, 165 p.

3. Kaufmann, A. (1977). Introduction a la theorie des sous-ensembles flous. Masson, Paris.

4. Gostev, V.I. (2008). Nechetkiye regulyatory v sistemakh avtomaticheskogo upravleniya [Fuzzy regulators in automatic control systems]. Kiev: Radiamator, 972 p. (in Russian)

5. Pirogov, Yu.N. (2006). Matematicheskoye modelirovaniye protsessov funktsionirovaniya obyektov tekhnicheskikh sredstv obespecheniya goryuchim [Mathematical modeling of the refueling technical facilities functioning processes]. Moscow: Neografiya, 228 p. (in Russian)

6. Ventzel, E.S. and Ovcharov, L.A. (2013). Teoriya sluchaynykh protsessov i yeye inzhenernyye prilozheniya: uchebnoye posobiye dlya VTUZov [The theory of random processes and its engineering applications]. 5th ed., ster., Moscow: KNORUS, 448 p. (in Russian)

7. Gromov, V.K. (2011). Kontseptsiya modernizatsii. Protsessornyy podkhod k organizatsii toplivozapravochnykh kompleksov aeroportov [The concept of modernization. The process approach to the organization of airport fueling complexes]. Informatsionnyy sbornik Assotsiatsii OATO VS GA, no. 6, pp. 36–41. (in Russian)

8. Jager, R.R. (1982). Fuzzy sets and the theory of possibilities. Recent achievements. Pergamon Press, Oxford, New York, 672 p.

9. Kovalenko, V.P. and Ilinskiy, A.A. (1982). Osnovy tekhniki ochistki zhidkostey ot mekhanicheskikh primesey [Basics of techniques for cleaning liquids from mechanical impurities]. Moscow: Khimiya, 272 p. (in Russian)

10. Entov, V.M. (1998). Teoriya filtratsii [Theory of filtration]. Soros educational journal, no. 2. pp. 121–128. (in Russian)

11. Brodskiy, G.S. (2004). Filtry i sistemy filtratsii dlya mobilnykh mashin [Filters and filtration systems for mobile machines]. Moscow: Gornaya promyshlennost, 359 p. (in Russian)

12. Brailko, A.A. (2013). Monitoring chistoty topliv v sisteme toplivoobespecheniya ZAO «Toplivo-zapravochnyy servis» aeroporta «Vnukovo» [Monitoring fuel purity in the fuel supply system of CJSC Fuel-Filling Service, Vnukovo Airport]. Grazhdanskaya aviatsiya na sovremennom etape razvitiya nauki, tekhniki i obshchestva: sbornik trudov Х mezhdunarodnoy nauchnotekhnicheskoy konferentsii [Scientific and technical conference: Civil Aviation at the present stage of development of science, technology and society]. Moscow: MGTU GA, p. 25. (in Russian)

13. Titov, I.V. and Govorov, A.T. (1970). Obvodneniye aviatopliv i ochistka ikh ot mekhanicheskikh primesey i vody [Water flooding of jet fuels and their cleaning from mechanical impurities and water]. Moscow: GosNII GA, 14 p. (in Russian)

14. Yanovskii, L.S., Dubovkin, N.F., Galimov, F.M. and Gortyshev, N.F. (2005). Inzhenernyye osnovy aviatsionnoy khimmotologii: Monografiya [Engineering Foundations of Aviation Chemmotology: Monograph]. Kazan: Izdatelstvo kazanskogo universiteta, 713 p. (in Russian)

15. Bolshakov, G.F. (1982). Vosstanovleniye i control kachestva nefteproduktov [Reviving and quality control of petroleum products]. 2nd ed., pererab. i dop., Leningrad: Nedra, 350 p. (in Russian)

16. Tikhonov, N.I., Salenko, N.N. and Lebedeva, G.I. (1972). Obespecheniye chistoty topliv v usloviyakh aerodromnoy ekspluatatsii [Ensuring the purity of fuels under conditions of aerodrome operation]. Ekspluatatsionnyye svoystva aviatsionnykh topliv: trudy konferentsii [Operational properties of aviation fuels: Tr. Conferences]. Kiev: KIIGA, pp. 85–89. (in Russian)

17. Brailko, A.A., Druzhinin, N.A., Druzhinin, L.A., Smulskiy, A.V., Smulskaya, M.A. and Syroyedov, N.Ye. (2015). Ustroystvo kontrolya soderzhaniya mekhanicheskikh primesey v zhidkosti i sistema monitoring soderzhaniya mekhanicheskikh primesey v potoke zhidkosti [A device for monitoring the content of mechanical impurities in a liquid and a system for monitoring the content of mechanical impurities in a fluid stream]. Patent PM RU, no. 141654, August 26, 2015. (in Russian)

18. Brailko, A.A., Druzhinin, N.A., Druzhinin, L.A., Smulskiy, A.V., Smulskaya, M.A. and Syroyedov, N.Ye. (2017). Sposob kontrolya soderzhaniya mekhanicheskikh primesey v zhidkosti, ustroystvo dlya yego osuchshestvleniya i sistema monitoring soderzhaniya mekhanicheskikh primesey v potoke [A method for controlling the content of mechanical impurities in a liquid, for its implementation, and a system for monitoring the content of mechanical impurities in a fluid stream]. Patent RU, no. 2563813, May 29, 2017. (in Russian)

19. Rybakov, K.V. (1983). Filtratsiya aviatsionnykh topliv [Filtration of aviation fuels]. 2nd ed., pererab. i dop., Moscow: Transport, 158 p. (in Russian)

20. Tuk, D.E., Garipov, A.A. and Tselishchev, V.A. (2011). Research of a current of a liquid in filterelements with a volume principle of a filtration. Vestnik UGATU, vol. 15, no. 4 (44). pp. 159–163. (in Russian)

21. Brailko, A.A. and Smulskiy, A.A. (2013). Otsenka ostatochnogo resursa filtroelementov [Estimation of the residual resource of filter elements]. Moscow: Informatsionnyy sbornik OATO VS GA, no. 8, pp. 66–69. (in Russian)

22. Rybakov, K.V., Zhuldybin, Ye.N. and Kovalenko, V.P. (1979). Obezvozhivaniye aviatsionnykh goryuche-smazochnykh materialov [Dehydration of aviation fuels and lubricants]. Moscow: Transport, 181 p. (in Russian)


Review

For citations:


Brailko A.A., Gromov O.V., Druzhinin L.A. Digital technologies are the basis of digital economy of civil aviation airport refueling complexes. Civil Aviation High Technologies. 2020;23(4):20-32. (In Russ.) https://doi.org/10.26467/2079-0619-2020-23-4-20-32

Views: 1029


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2079-0619 (Print)
ISSN 2542-0119 (Online)