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Modeling and Flight Testing of Wing Shaping for Autonomous Control

机译:自主控制翼形塑造的建模与飞行试验

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UAV development and usage has increased dramatically in the last 15 years. In this time frame the potential has been realized for deployable UAVs to the extent that a new class of UAV was defined for these systems. Inflatable wing UAVs provide a unique solution for deployable UAVs because they are highly packable (some packing to 5-10% of their deployed volume) and have the potential for the incorporation of wing shaping. In this paper, aileron effectiveness was derived from the equations of motion of aircraft as a necessary parameter for roll control during autonomous flight. A modeling process was then developed to calculate the aileron effectiveness of a wing shaping demonstrator aircraft. Successful autonomous flight tests were performed with the demonstrator aircraft including in-flight aileron doublets to validate the predicted aileron effectiveness, which matched within 8%.
机译:在过去的15年里,无人机的开发和用法急剧增加。在此时间框架中,潜力已经实现了可部署的无人机,到这些系统为新的UAV定义了新的UAV。充气机翼UAV为可部署的无人机提供了一个独特的解决方案,因为它们是高度可包装的(某些包装到其部署的5-10%),并且具有翼形整形的可能性。本文从飞机运动方程衍生出杂散的效果作为自主飞行期间滚动控制的必要参数。然后开发了一种建模过程以计算机翼塑造示范飞机的Aileron效果。成功的自主飞行试验是用示威航空器进行的,包括飞行中的Aileron Doublets,以验证预测的Aileron效果,在8%内匹配。

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