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Improved Multibody Model of Flexible Wing

机译:改进了柔性翼的多体模型

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In the development of High Altitude Long Endurance (HALE) UAVs and their control the flexibility of the wing must be taken into account. The wing of this type of UAVs, usually made of highly flexible composite materials, has high aspect ratio with significant bending-torsional deformation during flight. The NASA Helios, as an example, has tragically shown that wing deformation coupled with control and power operation can cause serious problem in flight, instability can suddenly occur and can be quite difficult to foresee. In this paper the mathematical description of a flexible wing multibody model is presented. It is suitable to simulate the effect of both structural flexibility and flight dynamics and maneuvering on the wing deformation, and can be used to help developing control strategies for air vehicles with highly deformable wings. The paper will present simulation results for a typical HALE (High Altitude Long Endurance) wing with control surfaces and the effect of flexibility on the flight dynamic will be explored.
机译:在高海拔长期耐力(HALE)无人机的发展中,必须考虑机翼的灵活性。这种类型的无人机的机翼通常由高度柔韧的复合材料制成,在飞行期间具有高纵横比具有显着的弯曲扭转变形。作为示例,美国宇航局Helios已经悲惨地表明,与控制和电源运行相结合的机翼变形会导致飞行中的严重问题,不稳定会突然发生,并且可能很难预见。在本文中,提出了一种柔性翼多体模型的数学描述。它适用于模拟结构灵活性和飞行动力学的效果以及在机翼变形上操纵,可用于帮助开发具有高度可变形翼的空气车辆的控制策略。本文将探讨用控制表面的典型高热(高海拔长耐力)机翼的仿真结果,并探讨灵活性对飞行动力的影响。

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