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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Nonlinear robust adaptive control of an airplane with structural damage
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Nonlinear robust adaptive control of an airplane with structural damage

机译:具有结构损伤的飞机的非线性鲁棒自适应控制

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摘要

This article investigates the design of a novel nonlinear robust adaptive control architecture to stabilize and control an airplane in the presence of left-wing damage. Damage effect is modeled by considering the sudden mass and inertia changes, center of gravity, and aerodynamic variations. The novel nonlinear control algorithm applies a state predictor as well as the error between the real damaged dynamics and a virtual model based on the nominal aircraft dynamics in the control loop of the adaptive strategy. The projection operator is used for the purpose of robustness of the adaptive control algorithm. The stability of the proposed nonlinear robust adaptive controller is demonstrated applying the Lyapunov stability theory. The performance of the proposed controller is compared with two previous successful algorithms, which are implemented on the Generic Transport Model airplane to accommodate wing damage. Numerical simulations demonstrate the effectiveness and advantages of the proposed robust adaptive algorithm regarding two other algorithms of adaptive sliding mode and L adaptive control.
机译:本文调查了一种新型非线性鲁棒自适应控制架构的设计,以在左翼损伤的存在下稳定和控制飞机。通过考虑突然质量和惯性变化,重心和空气动力学变化来建模损伤效果。新颖的非线性控制算法应用了一个状态预测器以及基于自适应策略控制环中的标称飞行器动态的真实损坏动态和虚拟模型之间的误差。投影算子用于自适应控制算法的稳健性的目的。所提出的非线性鲁棒自适应控制器的稳定性被证明应用Lyapunov稳定性理论。将所提出的控制器的性能与两个先前的成功算法进行比较,这在通用传输模型飞机上实现以适应机翼损坏。数值模拟证明了所提出的鲁棒自适应算法的有效性和优点,了关于自适应滑模和L自适应控制的两个其他算法。

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