High Speed Aircraft Robust Fuzzy Controller Design Based on H_∞ Performance

The dynamics of the high-speed vehicle(HSV) is partially or completely unknown because of various reasons, such as modeling errors, in-flight failure, and external disturbances. In this paper, a global stability robust fuzzy controller is designed to control the flight F-16 with uncertain perturbati...

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Veröffentlicht in:电子科技学刊 2017-03, Vol.15 (1), p.83-89
1. Verfasser: Chun-Ning Yang Zhen-Yang Chai Quan-Jun Liu Hui Ge
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Sprache:eng
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Zusammenfassung:The dynamics of the high-speed vehicle(HSV) is partially or completely unknown because of various reasons, such as modeling errors, in-flight failure, and external disturbances. In this paper, a global stability robust fuzzy controller is designed to control the flight F-16 with uncertain perturbation. For the desired H_∞ output-feedback controllers, a necessary and sufficient condition of quadratic stability is derived with the well-established results of the Lyapunov stability theory and nonnegative matrix. The controllers not only guarantee the global asymptotically stability of the resultant closed-loop system with external disturbance and parameter perturbation, but also have a desired H∞ performance in a large flight envelop(LFE).
ISSN:1674-862X
DOI:10.11989/JEST.1674-862X.5102615