Affiliation of Author(s):自动化学院
Journal:Aerosp Sci Technol
Abstract:A fuzzy adaptive non-affine attitude tracking control method is proposed for a generic hypersonic flight vehicle (HFV). Due to the complexities of the hypersonic flows and nonlinear dynamics, the aerodynamic coefficients of the HFV are dependent not only on the attack of angle, sideslip angle, angular rates, and Mach number, but also on the deflection angles of the control surfaces. This cause the attitude tracking control problem becomes a non-affine multi-input–multi-output (MIMO) one. By analyzing the characteristics of the aerodynamic coefficients, it can be found that the non-affine terms have a great influence on the attitude dynamics and should not be ignored. Then, a non-affine MIMO attitude tracking controller is designed using fuzzy sliding mode adaptive techniques with consideration of the non-affine nonlinear aerodynamic coefficients. The proposed controller has good practicability because it does not need to know the exact bound values of the uncertainties, unmodeled dynamics, and external disturbances. Finally, simulation results show that the attitude angles can track the desired signals robustly and asymptotically under the control. © 2018 Elsevier Masson SAS
ISSN No.:1270-9638
Translation or Not:no
Date of Publication:2018-09-01
Co-author:cm,wqx,Zhang, Jun
Correspondence Author:Wang Yuhui
Professor
Supervisor of Doctorate Candidates
Gender:Female
Education Level:南京航空航天大学
Degree:Doctoral Degree in Engineering
School/Department:College of Automation Engineering
Discipline:Control Theory and Engineering. Control Science and Engineering
Business Address:自动化学院4号楼401
Contact Information:025-84892301-8023
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