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Aeroelastic tailoring using piezoelectric actuation and hybrid optimization

机译:使用压电驱动和混合优化的空气弹性剪裁

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Active control of fixed wing aircraft using piezoelectric materials has the potential to improve its aeroelastic response while reducing weight penalties. However, the design of active aircraft wings is a complex optimization problem requiring the use of formal optimization techniques. In this paper, a hybrid optimization procedure is applied to the design of an airplane wing, represented by a flat composite plate, with piezoelectric actuation to improve the aeroelastic response. Design objectives include reduced static displacements, improved passenger comfort during gust and increased damping. Constraints are imposed on the electric power consumption and ply stresses. Design variables include composite stacking sequence, actuator/sensor locations and controller gain. Numerical results indicate significant improvements in the design objectives and physically meaningful optimal designs.
机译:使用压电材料的固定翼飞机的主动控制具有可能改善其气动弹性的响应,同时减少重量罚款。然而,主动飞机翼的设计是一种复杂的优化问题,需要使用正式优化技术。在本文中,将混合优化过程应用于由平坦复合板表示的飞机翼的设计,具有压电致动以改善空气弹性响应。设计目标包括降低静态位移,阵风期间的乘客舒适性和增加的阻尼。限制是对电力消耗和帘布层应力的限制。设计变量包括复合堆叠序列,执行器/传感器位置和控制器增益。数值结果表明了设计目标和物理有意义的最佳设计的显着改进。

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