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Software systems and computational methods
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Mironova M.M., Kulifeev Yu.B. Simulation software package for controlling the regimes of horizontal flight of an unmanned aircraft

Abstract: The subject of the study is to optimize the management of flight speed and altitude of the aircraft, implementing a coordinated deflection of controls using special algorithmic software for flight control and navigation systems of automatic control. The authors solve the problem of creating a simulation software for controlling the regimes of horizontal flight of an unmanned aircraft, which allows to validate (to carry out a comprehensive study for a wide range of conditions, conditions and restrictions) control algorithms altitude and airspeed with the help of an integrated management system. The results are presented in relation to the adaptive control algorithm speed and altitude UAV aircraft type having versatility. The research methodology includes methods of mathematical modeling, management of complex systems, inverse problems of dynamics, system simulation, adaptive control, flight dynamics, aerodynamics. The main result of the study is a program complex of modeling management regimes of horizontal flight of an unmanned aircraft, which has been used to validated control algorithm level flight of an unmanned aircraft, providing an increase in the speed control loop speed and altitude, reducing fuel consumption, due to the desire of the current rate closer to the optimal value due to the withdrawal of the aircraft at the optimum altitude.


Keywords:

speed control loop, autothrottle, longitudinal control channel, flight control and navigation system, unmanned aerial vehicle, flight control, flight control algorithm, flight simulation, the inverse problem of dynamics, modeling software package


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References
1. Khar'kov V.P., Khalyutin S.P. Upravlenie vektorom skorosti poleta letatel'nogo apparata na osnove energeticheskogo podkhoda // Nauchnyy vestnik Moskovskogo gosudarstvennogo tekhnicheskogo universiteta grazhdanskoy aviatsii. 2015. ¹ 213 (3). S. 73-80.
2. Shibanov G.P. Optimizatsiya sistem upravleniya letatel'nym apparatom po kriteriyam upravlyaemosti i nablyudaemosti // Mekhatronika, avtomatizatsiya, upravlenie. 2012. ¹ 4. S. 57-61.
3. Gulevich S.P., Aleksandrovskiy B.V., Veselov Yu.G. Obosnovanie osnovnykh trebovaniy k kharakteristikam dvizheniya bespilotnykh letatel'nykh apparatov dvoynogo naznacheniya // Problemy bezopasnosti poletov. 2008. ¹ 8. S. 25-39.
4. Severtsev N.A., Shipilov V.V. Distantsionno upravlyaemye bespilotnye dvukhsrednye apparaty // Voprosy teorii bezopasnosti i ustoychivosti sistem. 2014. ¹ 16. S. 107-116.
5. Khar'kov V.P. Algoritm upravleniya otnositel'nym polozheniem bespilotnykh letatel'nykh apparatov // Informatsionno-izmeritel'nye i upravlyayushchie sistemy. 2015. T. 13. ¹ 5. S. 33-40.
6. Gulevich S.P., Veselov Yu.G. Vybor i obosnovanie minimal'no neobkhodimogo ob'ema parametrov poletnoy informatsii, izmeryaemykh na bortu bespilotnogo letatel'nogo apparata // Problemy bezopasnosti poletov. 2008. ¹ 11. S. 58-63.
7. Bukov V.N., Bocharov A.S., Sel'vesyuk N.I. Sintez konturov upravleniya letatel'nogo apparata s garantirovannoy tochnost'yu // Giroskopiya i navigatsiya. 2006. ¹ 3 (54). S. 86.
8. Kulifeev Yu.B., Afanas'ev Yu.N. Algoritm avtomaticheskogo privedeniya samoleta k zadannym vysote i skorosti gorizontal'nogo poleta // Mekhatronika, avtomatizatsiya, upravlenie. 2011. ¹
9. S. 54-58. 9. Makarenko V.G., Podorozhnyak A.A., Rudakov S.V., Bogomolov A.V. Inertsial'no-sputnikovaya navigatsionnaya sistema upravleniya transportnymi sredstvami // Problemy upravleniya. 2007. ¹ 1. S. 64-71.
10. Savchenko A.Yu., Sel'vesyuk N.I. Razrabotka metodicheskogo apparata sinteza robastnykh detsentralizovannykh zakonov upravleniya s model'noy koordinatsiey // Informatika i sistemy upravleniya. 2014. ¹ 2 (40). S. 158-167.
11. Gulevich S.P., Veselov Yu.G. Metodika opredeleniya koeffitsienta momenta tangazha bespilotnykh letatel'nykh apparatov po materialam naturnykh eksperimentov // Problemy bezopasnosti poletov. 2009. ¹ 11. S. 47-52.
12. Khar'kov V.P., Mikhalev I.S. Adaptivnyy algoritm upravleniya skorost'yu poleta letatel'nogo apparata // Informatsionno-izmeritel'nye i upravlyayushchie sistemy. 2011. T. 9. ¹ 1. S. 9-15.
13. Kulifeev Yu.B. Opredelenie diskretnykh matematicheskikh modeley dinamicheskikh ob'ektov, zadannykh lineynymi differentsial'nymi uravneniyami s postoyannymi koeffitsientami // Informatsionno-izmeritel'nye i upravlyayushchie sistemy. 2008. T. 6. ¹ 11. S. 5-19.
14. Kulifeev Yu.B., Likhachev I.V. Sintez algoritma upravleniya beskontaktnym ventil'nym dvigatelem metodom obratnykh zadach dinamiki // Mekhatronika, avtomatizatsiya, upravlenie. 2007. ¹ 1. S. 28-36.
15. Khar'kov V.P., Korsun O.H., Grebnev O.H. Sintez upravleniya bespilotnym letatel'nym apparatom na osnove metoda obratnykh zadach dinamiki i parametricheskoy identifikatsii // Vestnik komp'yuternykh i informatsionnykh tekhnologiy. 2010. ¹ 12. S. 18-23.
16. Kulifeev Yu.B., Afanas'ev Yu.N. Algoritmizatsiya avtomaticheskoy posadki samoleta v usloviyakh meteominimuma // Mekhatronika, avtomatizatsiya, upravlenie. 2012. ¹ 11. S. 60-66.
17. Gulevich S.P., Veselov Yu.G. Metod opredeleniya skorosti prizemleniya bespilotnykh letatel'nykh apparatov na osnove rezul'tatov matematicheskogo modelirovaniya i naturnykh eksperimentov // Problemy bezopasnosti poletov. 2008. ¹ 6. S. 33-37.
18. Makarenko V.G., Bogomolov A.V., Rudakov S.V., Podorozhnyak A.A. Tekhnologiya postroeniya inertsial'no-sputnikovoy navigatsionnoy sistemy upravleniya transportnymi sredstvami s neyrosetevoy optimizatsiey sostava vektora izmereniy // Mekhatronika, avtomatizatsiya, upravlenie. 2007. ¹ 1. S. 39-44.
19. Kulifeev Yu.B., Alekseev E.O. Algoritm otrabotki zadannoy traektorii dvizheniya samoleta po vzletno-posadochnoy polose // Mekhatronika, avtomatizatsiya, upravlenie. 2007. ¹ 10. S. 73-78.
20. Khar'kov V.P. Sintez optimal'nogo upravlenie nelineynymi dinamicheskimi sistemami na osnove kontseptsii obratnykh zadach dinamiki // Trudy mezhdunarodnogo simpoziuma Nadezhnost' i kachestvo. 2012. T. 1. S. 491-492.
21. Gurevich O.S. Gol'berg F.D., Selivanov O.D. Integrirovannoe upravlenie silovoy ustanovkoy mnogorezhimnogo samoleta. M.: Mashinostroenie, 1994. 304 s.
22. Kolomiets L.V., Fedorov M.V., Bogomolov A.V., Merezhko A.N., Soldatov A.S., Esev A.A. Metod podderzhki prinyatiya resheniy po upravleniyu resursami pri ispytaniyakh aviatsionnoy tekhniki // Informatsionno-izmeritel'nye i upravlyayushchie sistemy. 2010. T. 8. ¹ 5. S. 38-40.
23. Rudakov I.S., Rudakov S.V., Bogomolov A.V. Metodika identifikatsii vida zakona raspredeleniya parametrov pri provedeniya kontrolya sostoyaniya slozhnykh sistem // Informatsionno-izmeritel'nye i upravlyayushchie sistemy. 2007. T. 5. ¹ 1. S. 66-72.
24. Eremin E.M., Russkin A.V. Sposob rascheta otsenki maksimal'no dopustimoy vzletnoy massy bespilotnogo letatel'nogo apparata na etape ego proektirovaniya // Oboronnyy kompleks-nauchno-tekhnicheskomu progressu Rossii. 2014. ¹ 1 (121). S. 39-42
25. Baykin V.A., Stetsyuk A.N. Modelirovanie informatsionnogo upravleniya funktsionirovaniem sistemy kosmicheskoy svyazi i navigatsii // Trendy i upravlenie. - 2015. - 2. - C. 162 - 166. DOI: 10.7256/2307-9118.2015.2.14408.