Continuous Robust Control For Aeroelastic Vibration Control Of A 2-D Airfoil Under Unsteady Flow
Keywords
aeroelasticity; Aeroservoelasticity; disturbance mitigation; nonlinear control; robust control; unsteady aerodynamics
Abstract
In this paper, a particular class of 2-D aeroelastic systems accounting for structural nonlinearities in pitching displacement and operating in an unsteady aerodynamic incompressible flowfield description is considered. By using the flap hinge torque of a trailing-edge flap surface as the control input, a continuous controller is proposed to suppress the aeroelastic vibrations of the wing section model. The control design based on the choice of the pitching angle as the output variable yields a semi-global asymptotic stability result. Furthermore, the system is theoretically shown to be robust to external disturbances. Numerical simulation results verify the efficacy of the proposed control strategy toward suppressing aeroelastic vibration in both pre- and post-flutter flight speed regimes under a multitude of external disturbances.
Publication Date
7-1-2016
Publication Title
JVC/Journal of Vibration and Control
Volume
22
Issue
12
Number of Pages
2841-2860
Document Type
Article
Personal Identifier
scopus
DOI Link
https://doi.org/10.1177/1077546314554821
Copyright Status
Unknown
Socpus ID
84974824375 (Scopus)
Source API URL
https://api.elsevier.com/content/abstract/scopus_id/84974824375
STARS Citation
Zhang, K. and Behal, A., "Continuous Robust Control For Aeroelastic Vibration Control Of A 2-D Airfoil Under Unsteady Flow" (2016). Scopus Export 2015-2019. 3047.
https://stars.library.ucf.edu/scopus2015/3047