DocumentCode :
1997605
Title :
Digital controller design for the pitch axis of the F-14 using an H method
Author :
Yang, Jiann-Shiou ; Levine, William S.
Author_Institution :
Dept. of Comput. Eng., Minnesota Univ., Duluth, MN, USA
fYear :
1989
fDate :
13-15 Dec 1989
Firstpage :
2325
Abstract :
An H-based control system design procedure is developed to produce a controller in which the closed-loop system is designed, using H controller in which the closed-loop system is designed, using H methods similar to those of H. Kwakernaak (1986), to be robust with respect to both disturbance rejection and insensitivity to parameter variations. The H design approach is coupled with multicriterion optimization to design a pitch-axis controller for the F-14 aircraft, (a version of a benchmark problem). The authors design a discrete-time controller even though the benchmark is in continuous time. The benchmark, while specifying gain and phase margins, does not specify the expected ranges for the parameters of the plant. Estimates have been obtained of the reasonable ranges of parameter variations, which are checked against the design. The precompensator is used to shape the output response so as to cause the entire system to achieve the desired performance. The robustness of the angle-of-attack response under large parameter variations is examined. A satisfactory design has not yet been obtained. However, these intermediate results are thought to be of value in demonstrating the difficulty of the problem and the thought processes involved in trying to use H methods to solve a realistic design problem
Keywords :
aerospace computer control; closed loop systems; compensation; control system synthesis; digital control; optimal control; stability; F-14 aircraft; H-based control system design procedure; closed-loop system; digital control; discrete-time controller; disturbance rejection; gain margin; multicriterion optimization; optimal control; parameter variation insensitivity; phase margins; pitch axis; precompensator; robustness; stability; Aerospace control; Aircraft; Algorithm design and analysis; Bandwidth; Control systems; Damping; Design optimization; Digital control; H infinity control; Robustness;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Decision and Control, 1989., Proceedings of the 28th IEEE Conference on
Conference_Location :
Tampa, FL
Type :
conf
DOI :
10.1109/CDC.1989.70589
Filename :
70589
Link To Document :
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