作者
Haithem E Taha, Mohammadali Kiani, Tyson L Hedrick, Jeremy SM Greeter
发表日期
2020/9/30
期刊
Science Robotics
卷号
5
期号
46
出版商
Science Robotics
简介
It is generally accepted among biology and engineering communities that insects are unstable at hover. However, existing approaches that rely on direct averaging do not fully capture the dynamical features and stability characteristics of insect flight. Here, we reveal a passive stabilization mechanism that insects exploit through their natural wing oscillations: vibrational stabilization. This stabilization technique cannot be captured using the averaging approach commonly used in literature. In contrast, it is elucidated using a special type of calculus: the chronological calculus. Our result is supported through experiments on a real hawkmoth subjected to pitch disturbance from hovering. This finding could be particularly useful to biologists because the vibrational stabilization mechanism may also be exploited by many other creatures. Moreover, our results may inspire more optimal designs for bioinspired flying robots by …
引用总数
20202021202220232024313172513
学术搜索中的文章