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Nonlinear tracking control and structural vibration suppression for aircraft using synthetic jet actuators

机译:使用合成射流作动器的飞机非线性跟踪控制和结构减振

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A synthetic jet actuator (SJA)-based control method is developed, which is rigorously proven to achieve accurate aircraft trajectory tracking control while simultaneously regulating limit cycle oscillations (LCO) in aircraft wings. To achieve the result, innovative tracking error system development is utilized along with a robust-inverse control structure. The robust-inverse control structure is utilized to compensate for the parametric uncertainty and nonlinearity inherent in the SJA mathematical model without the use of adaptive parameter estimation or function approximation schemes. After recasting the dynamics in a form amenable to control design, a nonlinear control law is developed, which achieves asymptotic trajectory tracking in the presence of external disturbances and structural disturbances due to LCO. A Lyapunov-based stability analysis is utilized to prove semi-global asymptotic trajectory tracking in the presence of LCO disturbances and parametric uncertainty in the SJA actuator model. Numerical simulation results are provided to demonstrate the capability of the proposed SJA-based control method to achieve simultaneous trajectory tracking and LCO regulation.
机译:开发了一种基于合成喷射执行器(SJA)的控制方法,该方法经过严格验证,可以实现精确的飞机轨迹跟踪控制,同时可以调节飞机机翼的极限循环振荡(LCO)。为了获得结果,采用了创新的跟踪误差系统开发以及鲁棒逆控制结构。鲁棒逆控制结构用于补偿SJA数学模型中固有的参数不确定性和非线性,而无需使用自适应参数估计或函数逼近方案。在以适合于控制设计的形式重塑动力学之后,开发了一种非线性控制定律,该定律在存在外部扰动和LCO引起的结构扰动的情况下实现了渐近轨迹跟踪。基于Lyapunov的稳定性分析用于证明在SJA执行器模型中存在LCO干扰和参数不确定性的情况下的半全局渐近轨迹跟踪。数值仿真结果证明了所提出的基于SJA的控制方法能够实现同时轨迹跟踪和LCO调节的能力。

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