变形
翼
航空航天工程
推力
转弯半径
无人机
空气动力学
折叠(DSP实现)
计算机科学
攻角
螺旋桨
机翼扭转
航空学
模拟
工程类
结构工程
海洋工程
人工智能
生物
遗传学
作者
Enrico Ajanic,Mir Feroskhan,Valentin Wüest,Dario Floreano
出处
期刊:
[Springer Science+Business Media]
日期:2022-11-24
卷期号:1 (1)
被引量:34
标识
DOI:10.1038/s44172-022-00035-2
摘要
Abstract Flight in dense environments, such as forests and cities requires drones to perform sharp turns. Although fixed-wing drones are aerodynamically and energetically more efficient than multicopters, they require a comparatively larger area to turn and thus are not suitable for fast flight in confined spaces. To improve the turning performance of winged drones, here we propose to adopt an avian-inspired strategy of wing folding and pitching combined with a folding and deflecting tail. We experiment in wind tunnel and flight tests how such morphing capabilities increase the roll rate and decrease the turn radius - two measures used for assessing turn performance. Our results indicate that asymmetric wing pitching outperforms asymmetric folding when rolling during cruise flight. Furthermore, the ability to symmetrically morph the wing and tail increases the lift force, which notably decreases the turn radius. These findings pave the way for a new generation of drones that use bird-like morphing strategies combined with a conventional propeller-driven thrust to enable aerodynamic efficient and agile flight in open and confined spaces.
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