DocumentCode :
3594283
Title :
A loop transfer recovery approach to h design for the coupled mass benchmark problem
Author :
Byrns, Edward V., Jr. ; Calise, Anthony J.
Author_Institution :
Graduate Research Assistant, Georgia Institute of Technology, School of Aerospace Engineering, Atlanta, Georgia 30332
fYear :
1991
Firstpage :
1925
Lastpage :
1926
Abstract :
This paper presents two robust fixed order dynamic compensator designs for the coupled mass benchmark problem. The design technique uses a method for Loop Transfer Recovery at the plant input to approximately recover the transfer properties of a reduced parameter sensitivity full state H controller. The recovery is accomplished by the unique selection of quadratic performance index weighting matrices in a standard optimal output feedback formulation for fixed order compensation. An observer canonical form is used to represent the compensator dynamics. The first design addresses Problem #1, where only the spring stiffness is uncertain. The second design focuses on Problem #2, which has three uncertain parameters.
Keywords :
Aerodynamics; Aerospace engineering; Control systems; Output feedback; Performance analysis; Programmable logic arrays; Robustness; Signal design; State feedback; Tellurium;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference, 1991
Print_ISBN :
0-87942-565-2
Type :
conf
Filename :
4791725
Link To Document :
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