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Aeroelastic Dynamic Response and Control of an Aeroelastic System with Hysteresis Nonlinearities

机译:迟滞非线性气动弹性系统的气动弹性响应和控制

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A state feedback control law based on the sliding mode control method is derived for the aeroelastic response and flutter suppression of a two-dimensional airfoil section with hysteresis nonlinearity in pitch. An observer is constructed to estimate the unavailable state variables of the system. With the control law designed, nonlinear effect of time delay between the control input and actuator is investigated by a numerical approach. The closed-loop system including the observer and nonlinear controller is asymptotically stable. The simulation results show that the observer can give precise estimations for the plunge displacement and the velocities in pitch and plunge and that the controller is effective for flutter suppression. The time delay between the control input and actuator may jeopardize the control performance and cause high-frequency vibrations.
机译:推导了基于滑模控制方法的状态反馈控制律,用于对音高具有滞后非线性的二维翼型截面进行气动弹性响应和颤振抑制。构造观察者以估计系统的不可用状态变量。通过设计控制律,通过数值方法研究了控制输入和执行器之间的时间延迟的非线性影响。包含观测器和非线性控制器的闭环系统是渐近稳定的。仿真结果表明,观察者可以精确估计推力位移和俯仰和推力的速度,并且该控制器对于抑制颤动是有效的。控制输入​​和执行器之间的时间延迟可能会危害控制性能并引起高频振动。

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