Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5472253 | Acta Astronautica | 2017 | 35 Pages |
Abstract
This paper presents a backstepping procedure to design an adaptive controller for the air-breathing hypersonic flight vehicle (AHFV) subject to external disturbances and actuator saturations. In each step, a sliding mode exact disturbance observer (SMEDO) is exploited to exactly estimate the lumped disturbance in finite time. Specific dynamics are introduced to handle the possible actuator saturations. Based on SMEDO and introduced dynamics, an adaptive control law is designed, along with the consideration on “explosion of complexity” in backstepping design. The developed controller is equipped with fast disturbance rejection and great capability to accommodate the saturated actuators, which also lead to a wider application scope. A simulation study is provided to show the effectiveness and superiority of the proposed controller.
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Physical Sciences and Engineering
Engineering
Aerospace Engineering
Authors
Hao An, Changhong Wang, Baris Fidan,