DocumentCode :
706525
Title :
Design, flight simulation, and handling qualities evaluation of an LPV gain-scheduled helicopter flight control system
Author :
Postlethwaite, Ian ; Konstantopoulos, Ioannis K. ; Xiao-Dong Sun ; Walker, Daniel J. ; Alford, Adrian G.
Author_Institution :
Control Syst. Res. Dept. of Eng., Univ. of Leicester, Leicester, UK
fYear :
1999
fDate :
Aug. 31 1999-Sept. 3 1999
Firstpage :
1178
Lastpage :
1183
Abstract :
This paper summarises a recent project involving the design, piloted simulation, and handling qualities evaluation of a Linear Parameter Varying (LPV) gain-scheduled helicopter flight control law. The work was jointly carried out by the Control Systems Research group of Leicester University and the Advanced Engineering group of GKN Westland Helicopters, Yeovil, England. The controller design was based on a Lynx MK7 helicopter model and used the quadratic H performance methodology with a 2-degrees-of-freedom controller. In an off-line computer analysis, the controller consistently achieved Level 1 Cooper-Harper handling qualities ratings. A series of successful flight simulations were then performed by two test pilots on Westland´s Advanced Engineering Simulation Facility (AESF). Both pilots consistently awarded Level 1 handling qualities ratings for the LPV gain-scheduled controller.
Keywords :
H control; aerospace simulation; aircraft control; control system synthesis; helicopters; linear parameter varying systems; 2-degrees-of-freedom controller; AESF; Advanced Engineering group; Control Systems Research group; England; GKN Westland Helicopters; LPV gain-scheduled helicopter flight control system design; Leicester University; Level 1 Cooper-Harper handling quality ratings; Lynx MK7 helicopter model; Westland Advanced Engineering Simulation Facility; Yeovil; flight simulation; handling quality evaluation; linear parameter varying gain-scheduled helicopter flight control law; offline computer analysis; quadratic H performance methodology; Actuators; Closed loop systems; Couplings; Helicopters; Linear approximation; Linear matrix inequalities; Standards; LPV; flight simulation; gain-scheduling; helicopter control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Conference (ECC), 1999 European
Conference_Location :
Karlsruhe
Print_ISBN :
978-3-9524173-5-5
Type :
conf
Filename :
7099469
Link To Document :
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