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Stable hovering of a jellyfish-like flying machine

机译:稳定地悬浮在类似水母的飞行器上

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摘要

Ornithopters, or flapping-wing aircraft, offer an alternative to helicopters in achieving manoeuvrability at small scales, although stabilizing such aerial vehicles remains a key challenge. Here, we present a hovering machine that achieves self-righting flight using flapping wings alone, without relying on additional aerodynamic surfaces and without feedback control. We design, construct and test-fly a prototype that opens and closes four wings, resembling the motions of swimming jellyfish more so than any insect or bird. Measurements of lift show the benefits of wing flexing and the importance of selecting a wing size appropriate to the motor. Furthermore, we use high-speed video and motion tracking to show that the body orientation is stable during ascending, forward and hovering flight modes. Our experimental measurements are used to inform an aerodynamic model of stability that reveals the importance of centre-of-mass location and the coupling of body translation and rotation. These results show the promise of flapping-flight strategies beyond those that directly mimic the wing motions of flying animals.
机译:尽管要稳定这种飞行器仍然是一个关键的挑战,但在小型飞行中,鸟翼直升机或襟翼飞机是替代直升机的一种选择。在这里,我们介绍了一种悬停机,该悬停机仅靠襟翼就能实现自动纠正飞行,而无需依靠其他空气动力学表面和反馈控制。我们设计,建造和试飞了一个能打开和关闭四个机翼的原型,比任何昆虫或鸟类都更像游泳水母的运动。升力的测量结果表明了机翼弯曲的好处,以及选择适合发动机的机翼尺寸的重要性。此外,我们使用高速视频和运动跟踪来显示身体姿势在上升,前进和悬停飞行模式中稳定。我们的实验测量结果用于为稳定性提供了一个空气动力学模型,该模型揭示了质量中心位置以及车身平移和旋转耦合的重要性。这些结果表明,扑扑飞行策略的前景超出了直接模仿飞行动物翅膀运动的策略。

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