IEEE/CAA Journal of Automatica Sinica
Citation: | Chaoxu Mu, Qun Zong, Bailing Tian and Wei Xu, "Continuous Sliding Mode Controller with Disturbance Observer for Hypersonic Vehicles," IEEE/CAA J. of Autom. Sinica, vol. 2, no. 1, pp. 45-55, 2015. |
[1] |
Fidan B, Mirmirani M, Ioannou P A. Flight dynamics and control of air-breathing hypersonic vehicles:review and new directions. In:Proceedings of the 2003 AIAA International Space Planes and Hypersonic Systems and Technologies. Norfolk, USA:AIAA, 2003.
|
[2] |
Fiorentini L, Serrani A, Bolender M A, Doman D B. Nonlinear robust adaptive control of flexible air-breathing hypersonic vehicles. Journal of Guidance, Control, and Dynamics, 2009, 32(2):401-416
|
[3] |
Sigthorsson D O, Jankovsky P, Serrani A, Yurkovich S, Bolender M, Doman D B. Robust linear output feedback control of an air-breathing hypersonic vehicle. Journal of Guidance, Control, and Dynamics, 2008, 31(4):1052-1065
|
[4] |
Zhu Y J, Shi Z K. Several problems of flight characteristics and flight control for hypersonic vehicles. Flight Dynamics, 2005, 23(3):5-8
|
[5] |
Gregory I M, McMinn J D, Chowdhry R S, Shaughnessy J D. Hypersonic Vehicle Model and Control Law Development Using H∞ and μ Synthesis, NASA Technical Memorandum, USA, NASA TM-4562, 1994.
|
[6] |
Lind R. Linear parameter-varying modeling and control of structural dynamics with aero-thermodynamic effects. Journal of Guidance, Control, and Dynamics, 2002, 25(4):733-739
|
[7] |
Oppenheimer M W, Doman D B. Control of an unstable, nonminimum phase hypersonic vehicle model. In:Proceedings of the 2006 Aerospace Conference. Big Sky, MT:IEEE, 2006. 1-22
|
[8] |
Gibson T E, Annaswamy A M. Adaptive control of hypersonic vehicles in the presence of thrust and actuator uncertainties. In:Proceedings of the 2008 AIAA Guidance, Navigation and Control Conference and Exhibit. Hawali, USA:AIAA, 2008.
|
[9] |
Serrani A, Zinnecker A M, Fiorentini L, Bolender M A, Doman D B. Integrated adaptive guidance and control of constrained nonlinear air-breathing hypersonic vehicle models. In:Proceedings of the 2009 American Control Conference. St. Louis, USA:IEEE, 2009. 3172-3177
|
[10] |
Wang Q, Stengel R F. Robust nonlinear control of a hypersonic aircraft. Journal of Guidance, Control, and Dynamics, 2000, 23(4):577-585
|
[11] |
Xu J H, Mirmirani M, loannou P A. Adaptive sliding mode control design for a hypersonic flight vehicle. Journal of Guidance, Control, and Dynamics, 2004, 27(5):829-838
|
[12] |
Bowcutt K G. Multidisciplinary optimization of airbreathing hypersonic vehicles. Journal of Propulsion and Power, 2001, 17(6):1184-1190
|
[13] |
Jiang C H, Zhang C Y, Zhu L. Research of robust adaptive trajectory linearization control based on T-S fuzzy system. Journal of Systems Engineering and Electronics, 2008, 19(3):537-545
|
[14] |
Zhu L, Jiang C S, Zhang C Y. Adaptive trajectory linearization control for aerospace vehicle based on RBFNN disturbance observer. Acta Aeronautica et Astronautica Sinica, 2007, 28(3):673-677
|
[15] |
Hu X X, Wu L G, Hu C H, Gao H J. Adaptive sliding mode tracking control for a flexible air-breathing hypersonic vehicle. Journal of the Franklin Institute, 2012, 349(2):559-577
|
[16] |
Yu S H, Yu X H, Shirinzadeh B, Man Z H. Continuous finite-time control for robotic manipulators with terminal sliding mode. Automatica, 2005, 41(11):1957-1964
|
[17] |
Slotine J J, Sastry S S. Tracking control of non-linear systems using sliding surfaces with application to robot manipulators. International Journal of Control, 1983, 38(2):465-492
|
[18] |
Slotine J J, Li W P. Applied Nonlinear Control. New Jersey:Prentice Hall, 1991.
|
[19] |
Li S H, Sun H B, Sun C Y. Composite control design for an air-breathing hypersonic vehicle. Proceedings of the Institution of Mechanical Engineers, Part I:Journal of Systems and Control Engineering, 2012, 226(5):651-664
|
[20] |
Sun H B, Li S H, Sun C Y. Finite time integral sliding mode control of hypersonic vehicles. Nonlinear Dynamics, 2013, 73(1-2):229-244
|
[21] |
Zong Q, Ji Y H, Zeng F L, Liu H L. Output feedback back-stepping control for a generic hypersonic vehicle via small-gain theorem. Aerospace Science and Technology, 2012, 23(1):409-417
|
[22] |
Zong, Q, Wang J, Tao Y. Adaptive high-order dynamic sliding mode control for a flexible air-breathing hypersonic vehicle. International Journal of Robust Nonlinear Control, 2013, 23(15):1718-1736
|
[23] |
Sigthorsson D O, Jankovsky P, Serrani A, Yurkovich S, Bolender M, Doman D B. Robust linear output feedback control of an air-breathing hypersonic vehicle. Journal of Guidance, Control and Dynamics, 2008, 31(4):1052-1066
|
[24] |
Bolender M A, Doman D B. Nonlinear longitudinal dynamical model of an air-breathing hypersonic vehicle. Journal of Spacecraft and Rockets, 2007, 44(2):374-387
|
[25] |
Shaughnessy J D, Pinckney S Z. Hypersonic Vehicle Simulation Model:Winged-Cone Configuration, NASA Technical Memorandum, USA, NASA TM-102610, 1991.
|
[26] |
Li F H. Guidance and Control Technology of Hypersonic Aircrafts. Beijing:China Astronautic Publishing House, 2012.
|
[27] |
Levant A. High-order sliding modes, differentiation and output feedback control. International Journal of Control, 2002, 76(9-10):924-9412
|
[28] |
Shtessel Y B, Shkolnikov A, Levant A. Smooth second-order sliding modes:missile guidance application. Automatica, 2007, 43(8):1470-1476
|
[29] |
Levant A. Robust exact differentiation via sliding mode technique. Automatica, 1998, 34(3):379-384
|