Smooth tracking control for conversion mode of a tilt-rotor aircraft with switching modeling
Kebi LUO, Shuang SHI, Cong PENG
Smooth tracking control for conversion mode of a tilt-rotor aircraft with switching modeling
This paper investigates the state-tracking control problem in conversion mode of a tilt-rotor aircraft with a switching modeling method and a smooth interpolation technique. Based on the nonlinear model of the conversion mode, a switched linear model is developed by using the Jacobian linearization method and designing the switching signal based on the mast angle. Furthermore, an H∞ state-tracking control scheme is designed to deal with the conversion mode control issue. Moreover, instead of limiting the amplitude of control inputs, a smooth interpolation method is developed to create bumpless performance. Finally, the XV-15 tilt-rotor aircraft is chosen as a prototype to illustrate the effectiveness of this developed control method.
Tilt-rotor aircraft / State-tracking control / Switched linear systems / Time-scheduled multiple Lyapunov function approach / Smooth interpolation
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