E. G. Krushel, E. S. Potafeeva, T. P. Ogar, I. V. Stepanchenko, I. M. Kharitonov
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References
|
|
| |
| 1. |
V. A. Besekerskii, Teoriya sistem avtomaticheskogo upravleniya, Professiya, SPb., 2003, 752 |
| 2. |
S. L. Brunton, L. N. Kutz, “Linear Control Theory”, Data Driven Science & Engineering: Machine Learning, Dynamical Systems, and Control, Cambridge University Press, 2019, 323–375 |
| 3. |
A. A. Bobtsov, Lineinye sistemy avtomaticheskogo upravleniya, Izd-vo SPbGITMO (TU), SPb., 2001, 245 |
| 4. |
B. Bamieh, L. Giarré, “Identification of linear parameter varying models”, International Journal of Robust and Nonlinear Control, 2002, 841–853 |
| 5. |
D. P. Kim, Teoriya avtomaticheskogo upravleniya, v. 1, Lineinye sistemy, Fizmatlit, M., 2003, 312 |
| 6. |
R. Becker, R. King, R. Petz, W. Nitsche, “Adaptive closed-loop control on a high-lift configuration using extremum seeking”, AIAA Journal, 45:6 (2007), 1382 |
| 7. |
F. Blanchini, “The gain scheduling and the robust state feedback stabilization problems”, Proceedings of the 38th IEEE Conference on Decision and Control, v. 2, 1999, 1821–1826 |
| 8. |
E. L. Itskovich, “Konkurentosposobnost rossiiskikh proizvoditelei kontrollerov na rynke sredstv avtomatizatsii proizvodstva”, Promyshlennye kontrollery ASU, 2008, no. 2, 4–10 |
| 9. |
I. Yu. Aleshin, A. V. Sycheva, D. K. Agisheva, “Interpolyatsiya neizvestnykh funktsii kubicheskimi splainami”, Sovremennye naukoemkie tekhnologii, 2014, no. 5-2, 188–189 |
| 10. |
D. R. Westenskow, Adaptive Closed-Loop Control of End-Tidal Concentrations of Volatile Agents, Control and Automation in Anaesthesia, Springer, Berlin–Heidelberg, 1995, 281 pp. |
| 11. |
J. Shamma, M. Athans, “Guaranteed properties of gain scheduled control for linear parameter varying plants”, Automatica, 1991, 559–564 |
| 12. |
J. Stringer, Linear Control Theory, Hydraulic Systems Analysis, Macmillan, London, 1976, 173 pp. |
| 13. |
M. Nemani, R. Ravikanth, B. Bamieh, “Identification of linear parametrically varying systems”, Proceedings of the 34th IEEE Control and Decision Conference (New Orleans, Louisiana, December 1995), v. 3, 1995, 2990–2995 |
| 14. |
I. V. Miroshnik, “Teoriya avtomaticheskogo upravleniya”, Lineinye sistemy, Piter, SPb., 2005, 336 |
| 15. |
N. D. Egupov, Metody klassicheskoi i sovremennoi teorii avtomaticheskogo upravleniya, uchebnik v 3 t., v. 3, Izd-vo MGTU im. Baumana, M., 2000, 748 pp. |
| 16. |
J. Shamma, D. Xiong, “Set-valued methods for linear parameter varying systems”, Automatica, 35 (1999), 1081–1089 |
| 17. |
L. Stephen, J. P. Campbell, R. Chancelier, Modeling and simulation Scilab/Scicos with ScicosLab 4.4, Springer Verlag, 2006, 309 pp. |
| 18. |
B. R. Andrievskii, A. L. Fradkov, Izbrannye glavy teorii avtomaticheskogo upravleniya s primerami na yazyke, Nauka, SPb., 1999, 467 |
| 19. |
H. Schaub, M. R. Akella, J. L. Junkins, “Adaptive Realization of Linear Closed-Loop Tracking Dynamics in the Presence of Large System Model Errors”, Journal of the Astronautical Sciences, 48:4 (2000), 537–551 |
| 20. |
Ya. Z. Tsypkin, B. G. Polyak, “Robastnaya ustoichivost lineinykh diskretnykh sistem”, Dokl. AN SSSR, 316:4 (1991), 842–846 |