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首页> 外文期刊>Journal of Sound and Vibration >Feedback tracking control for dynamic morphing of piezocomposite actuated flexible wings
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Feedback tracking control for dynamic morphing of piezocomposite actuated flexible wings

机译:压电复合材料动态变形的反馈跟踪控制驱动柔性翼

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摘要

Aerodynamic properties of flexible wings can be improved via shape morphing using piezocomposite materials. Dynamic shape control of flexible wings is investigated in this study by considering the interactions between structural dynamics, unsteady aerodynamics and piezo-actuations. A novel antisymmetric angle-ply bimorph configuration of piezocomposite actuators is presented to realize coupled bending-torsional shape control. The active aeroelastic model is derived using finite element method and Theodorsen unsteady aerodynamic loads. A time-varying linear quadratic Gaussian (LQG) tracking control system is designed to enhance aerodynamic lift with pre-defined trajectories. Proof-of-concept simulations of static and dynamic shape control are presented for a scaled high-aspect-ratio wing model. Vibrations of the wing and fluctuations in aerodynamic forces are caused by using the static voltages directly in dynamic shape control. The lift response has tracked the trajectories well with favorable dynamic morphing performance via feedback tracking control. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过使用压电胶合材料的形状形状改善柔性翼的空气动力学性能。通过考虑结构动力学,不稳定空气动力学和压电致动之间的相互作用,在本研究中研究了柔性翼的动态形状控制。提出了一种新的压电复合致动器的防压复合致动器的反对二棱镜结构,以实现耦合的弯曲扭转形状控制。使用有限元方法和Theodorsen不稳定气动负载来源的有源空气弹性模型。时变线性二次高斯(LQG)跟踪控制系统旨在增强具有预定义轨迹的空气动力学升力。展示了静态和动态形状控制的概念验证模拟,用于缩放的高纵横比翼模型。通过直接在动态形状控制中使用静电电压引起机翼的振动和空气动力学的波动。升降响应通过反馈跟踪控制跟踪了轨迹良好的动态变形性能。 (c)2017 Elsevier Ltd.保留所有权利。

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