THE MODELING OF AIR SITUATION USING OBJECT-ORIENTED PROGRAMMING SYSTEM
https://doi.org/10.26467/2079-0619-2017-20-4-107-113
Abstract
Nowadays, it does make sense to use demonstration flights in the area of air traffic control in various air situations. The questions of computer air plot simulation are considered. For the simulation of processes and systems the technology of simulation modeling is used. It is a formal description of the functioning logic. In addition, there is computation of multifactor experiments.
The picture of the aircraft is a conventional figure of the aircraft, the longitudinal axis position of which corresponds to its course. It can be on different or same routes. Changing of flight position appears according to the program using computer timer. For each aircraft, you enter its speed value. The controller can perform vectoring with the new course for changing the trajectory of the flight. The program has both automatic and manual modes. Mathematical modeling of flight, during the transition to a new course, does not relate to the characteristics of the specific type of aircraft. For example, there is the effectiveness of object-oriented program of air situation with one or more aircraft for training purposes. The aircraft forms on arbitrary sections of the route. The program determines for each aircraft the place of its initial installation and calculates the current distance to the next waypoint. The interval towards the waypoint determines the timeof automatic course changing to a value corresponding to the new route. It’s recommended to use Delphi programming system.
The object-oriented programming system is effective for the task. It shows that the data display and appropriate software are sufficient funds for the visualization of the air plot at different stages of studying.
About the Author
О. N. Tel’puhovskayaRussian Federation
Candidate of Technical Sciences, Associate Professor, Associate Professor of Moscow State Technical University of Civil Aviation
References
1. Brodsky Y.I. Lekcii po matematicheskomu i imitacionnomu modelirovaniju [The lectures of mathematic and studying simulation]. Moscow, Direct-Media, 2015, 240 p. (in Russian)
2. Avdeenko T.V., Gorskii V.G. Postroenie dinamicheskih modelej v prostranstve sostojanij [Creation of dynamic models in the space of states]. Moscow, NGTU, 2007, 292 p. (in Russian)
3. Sirota A.A. Komp'juternoe modelirovanie i ocenka jeffektivnosti slozhnyh sistem [Computer modeling and assessment of the efficiency of complex systems]. Moscow, Technosphere, 2006, 280 p. (in Russian)
4. Bordovskii G.A., Kondratyev A.S., Chouderi A.D. Fizicheskie osnovy matematicheskogo modelirovanija [Physical bases of mathematical modeling]. Moscow, Academy, 2005, 320 p. (in Russian)
5. Plokhotnikov K. E. Matematicheskoe modelirovanie i vychislitel'nyj jeksperiment [Mathematical modeling and computing experiment]. Moscow, Editorial of URSS, 2003, 280 p. (in Russian)
6. Samarskii A.A., Mikhaylov A.P. Matematicheskoe modelirovanie [Mathematical modeling]. Moscow, Fizmatlit, 2002, 320p. (in Russian)
7. Arkhangelskii A.Ya. Jazyk Delphi, klassy, funkcii Win32 i .NET. Spravochnoe posobie [Delphi 2006. Language, classes, Win32 and .NET functions. Handbook]. Moscow, Bing Press, 2011, 1152 p. (in Russian)
8. Lesnevskii A.S. Obektno-orientirovannoe programmirovanie dlja nachinajushhih [Objectoriented programming for beginners]. Moscow, Binom, 2010, 232 p. (in Russian)
9. Arkhangelskii A.Ya. Programmirovanie v Delphi [Programming in Delphi]. 2006. Moscow, Binom-Press, 2011, 1152 p. (in Russian)
10. Ozerov V.P. Delphi. Sovety programmistov [Delphi. Councils of programmers]. St. Petersburg, Simvol-Plus, 2003, 976 p. (in Russian)
Review
For citations:
Tel’puhovskaya О.N. THE MODELING OF AIR SITUATION USING OBJECT-ORIENTED PROGRAMMING SYSTEM. Civil Aviation High Technologies. 2017;20(4):107-113. (In Russ.) https://doi.org/10.26467/2079-0619-2017-20-4-107-113