DocumentCode :
2831966
Title :
Robust LPV H gain-scheduled hover-to-cruise conversion for a tilt-wing rotorcraft in the presence of CG variations
Author :
Dickeson, Jeffrey J. ; Miles, David ; Cifdaloz, Oguzhan ; Wells, Valana L. ; Rodriguez, Armando A.
Author_Institution :
Arizona State Univ., Tempe
fYear :
2007
fDate :
12-14 Dec. 2007
Firstpage :
2773
Lastpage :
2778
Abstract :
This paper describes the development and analysis of gain-scheduled, multi-variable Hinfin control law for the conversion of a linear parameter varying (LPV) model of a high-speed autonomous rotorcraft vehicle (HARVee), an experimental tilt-wing aircraft. Tilt-wing aircraft combine the high-speed cruise capabilities of a conventional airplane with the vertical takeoff and station keeping abilities of a helicopter by rotating their wings at the fuselage. Changing between cruise and hover flight modes in mid-air is referred to as the conversion process, or simply conversion. A nonlinear aerodynamic model was previously developed that captures the unique dynamics of the tilt-wing aircraft. An Hinfin design methodology was used to develop linear controllers along various operating points of a conversion trajectory. The development of these control systems was governed not only by performance specifications at each particular operating point, but also by the unique requirements of a gain-scheduled conversion control system. The performance of the resulting conversion closed-loop systems is analyzed in the frequency and time domains. Performance robustness with respect to variation in the location of the center of gravity (eg) has been studied.
Keywords :
Hinfin control; aerodynamics; aerospace components; control system synthesis; helicopters; linear systems; multivariable control systems; remotely operated vehicles; robust control; center of gravity; closed-loop systems; fuselage; gain-scheduled conversion control system; helicopter; high-speed autonomous rotorcraft vehicle; linear controllers; linear parameter varying model; multivariable Hinfin control law; nonlinear aerodynamic model; robust LPV Hinfin gain-scheduled hover-to-cruise conversion; tilt-wing rotorcraft; Aerodynamics; Aerospace control; Aircraft; Airplanes; Control systems; Helicopters; Mobile robots; Remotely operated vehicles; Robustness; Vehicle dynamics;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Decision and Control, 2007 46th IEEE Conference on
Conference_Location :
New Orleans, LA
ISSN :
0191-2216
Print_ISBN :
978-1-4244-1497-0
Electronic_ISBN :
0191-2216
Type :
conf
DOI :
10.1109/CDC.2007.4435028
Filename :
4435028
Link To Document :
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