DocumentCode :
184594
Title :
Active wing shaping control of an elastic aircraft
Author :
Nobleheart, Wilfred ; Chakravarthy, Animesh ; Nhan Nguyen
Author_Institution :
Dept. of Aerosp. Eng., Wichita State Univ., Wichita, KS, USA
fYear :
2014
fDate :
4-6 June 2014
Firstpage :
3059
Lastpage :
3064
Abstract :
In recent years, lightweight materials have been adopted in airframe design as a means to reduce aircraft weight. These lightweight materials provide adequate strength and durability, but at the expense of reduced structural rigidity. This increase in structural flexibility leads to a significant increase in the effects of aero-elastic interaction forces and moments, which can lead to important aircraft stability and control issues. In this paper, the optimal control design of an elastically shaped aircraft that has highly flexible wings is discussed. The aircraft has the capability to actively change the wing twist and bending in flight so as to achieve a local angle of attack distribution that is optimal for the specific flight condition. The aircraft has twenty three control surfaces, distributed along the trailing edge and leading edge of each wing. A multi-objective performance index that includes an explicit drag minimization term is considered, and a static output feedback controller design is performed using this performance index. Simulation results demonstrate the optimal wing shape change trajectories as well as the validity of the designed controller in stabilizing this elastic aircraft. The drag reduction achieved using static output feedback is compared with that obtained using full state feedback.
Keywords :
aerospace components; aircraft control; bending; control system synthesis; drag; durability; elasticity; feedback; flexible structures; minimisation; optimal control; performance index; shear modulus; stability; aeroelastic interaction forces; aeroelastic interaction moments; aircraft control; aircraft stability; aircraft weight; airframe design; control surfaces; drag minimization term; drag reduction; durability; elastic aircraft stabilization; elastically shaped aircraft; flexible wings; flight condition; leading edge; lightweight materials; local angle of attack distribution; multiobjective performance index; optimal control design; optimal wing shape; static output feedback controller design; structural flexibility; structural rigidity; trailing edge; wing bending; wing twist; Aerospace control; Aircraft; Equations; Mathematical model; Output feedback; Performance analysis; Shape; Aerospace; Flexible structures; Flight control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference (ACC), 2014
Conference_Location :
Portland, OR
ISSN :
0743-1619
Print_ISBN :
978-1-4799-3272-6
Type :
conf
DOI :
10.1109/ACC.2014.6859187
Filename :
6859187
Link To Document :
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