Design and Research of a Model of a Pair Active Aircraft Control Sidesticks Operation in MATLAB
https://doi.org/10.17587/mau.21.184-192
Abstract
The simulation results showed that developed device meets specified requirements for the aircraft active sidesticks.
About the Authors
R. R. AbdulinRussian Federation
Moscow, 127055
D. S. Timofeev
Russian Federation
Moscow, 127055
A. A. Kravchenko
Russian Federation
Moscow, 127055
I. V. Zaitsev
Russian Federation
Moscow, 127055
N. V. Krylov
Russian Federation
Moscow, 127055
S. L. Samsonovich
Russian Federation
Moscow, 125993
N. B. Rozhnin
Russian Federation
Moscow, 125993
A. P. Larin
Russian Federation
Moscow, 125993
M. A. Makarin
Russian Federation
Ph.D.
Moscow, 125993
References
1. Hermans R. L. Design of an actuated side stick controller for the SiMoNa research simulator, Delft, Delft University of Technology, 1999, 154 р.
2. Hanke D., Herbst C. Active sidestick technology — a means for improving situational awareness, Aerospace science technology, 1999, vol. 3, pp. 1—11.
3. Abdulin R. R., Krylov N. V., Kravchenko A. A., Larin A. P., Makarin M. A., Rozhnin N. B., Samsonovich S. L., Timofeev D. S., Zaets V. F. Patent RU № 2681462 06.03.2019 (in Russian).
4. Abdulin R. R., Timofeev D. S., Kravchenko A. A., Krylov N. V., Samsonovich S. L., Rozhnin N. B., Larin A. P., Makarin M. A. Kinematic and power characteristics of the active frameless aircraft control sidestick, Mekhatronika, Avtomatizatsiya, Upravlenie, 2018, vol. 19, no. 10, pp. 673—679 (in Russian).
5. Abdulin R. R., Kravchenko A. A., Krylov N. V., Timofeev D. S., Larin A. P., Makarin M. A., Rozhnin N. B., Samsonovich S. L. Development of the structural-kinematic scheme of the active aircraft sidestick control based on a rocking washer and oblique crank, Materials of the V scientific-practical conference in memory of O. V. Ouspensky, Moscow, Publishing House of the Zhukovsky Academy, 2018, pp. 57—64 (in Russian).
6. Efremov A. V., Alexandrov V. V., Valerov K. V. Research of type and signal of a control lever to plane-pilot system, Trydy MAI, 2017, no. 94, available at: http://trudymai.ru/published. php?ID=80903 (in Russian).
7. Lee B. P., Rodchenko V. V., Zaichik L. E. An approach to feel system characteristics selection, AIAA Atmospheric Flight Mechanics Conference and Exhibit, AIAA Paper № 5362, 2004.
8. Rodchenko V. V., Zaichik L. E., Yashin Yu. P. Similarity criteria for manipulator loading and control sensitivity characteristics, Journal of Guidance, Control, and Dynamics, 1998, vol. 21, no. 2, pp. 307—314.
9. Zaichik L. E., Grinev K. N., Yashin Yu. P., Sorokin S. A. Effect of Feel System Characteristics on Pilot Model Parameters, Proceedings of the 1st IFAC Conference on Cyber-Physical & Human-Systems, Brazil, Florionapolis, 2016, pp. 165—170.
10. Black G. Th., Moorhouse D. J. Flying Qualities Design Requirements for Sidestick Controllers. 1979. 186 p. URL: http://contrails.iit.edu/reports/9304.
11. Hall G. W., Smith R. E. Flight Investigation of Fighter Side-Stick Force-Deflection Characteristics. 1975. 96 p. URL: http://contrails.iit.edu/reports/9208.
12. Jann Mayer, Timothy H. Cox. Evaluation of Two Unique Side Stick Controllers in a Fixed-Base Flight Simulator, NASA Dryden Flight Research Center, Edwards, California, 2003.
Review
For citations:
Abdulin R.R., Timofeev D.S., Kravchenko A.A., Zaitsev I.V., Krylov N.V., Samsonovich S.L., Rozhnin N.B., Larin A.P., Makarin M.A. Design and Research of a Model of a Pair Active Aircraft Control Sidesticks Operation in MATLAB. Mekhatronika, Avtomatizatsiya, Upravlenie. 2020;21(3):184-192. (In Russ.) https://doi.org/10.17587/mau.21.184-192