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Design and Analysis of a Bio-Inspired Warping Tail for MAV Applications

机译:MAV应用的生物启发型翘曲尾巴的设计与分析

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This paper examines a unique method of flight control for flapping wing micro air vehicles. Instead of employing rigid body joints and flaps for torsional agility, the technique implemented a compliant tail mechanism. The bio-inspired technique utilizes a flexible carbon fiber (CF) tail to mimic body posture changes of insects, specifically lateral abdomen deflections. This method of flight control was examined using Flytech's WowWee Dragonfly as an experimental platform. Trajectory analysis was done to generate a three dimensional flight path of the vehicle for examining flight characteristics. ANSYS FLUENT fluid dynamics software with GAMBIT and Solidworks CAD software were utilized to investigate aerodynamic torques and gravitational torques corresponding to active tail warping. The results provided evidences suggesting that the warping tail administered adequate control authority for basic maneuvering.
机译:本文研究了扑翼微型航空器飞行控制的一种独特方法。该技术没有采用刚性接头和襟翼来实现扭转敏捷性,而是采用了顺应性的尾部机构。受生物启发的技术利用柔性碳纤维(CF)尾巴来模仿昆虫的体位变化,尤其是腹部的侧向偏斜。使用Flytech的WowWee Dragonfly作为实验平台对这种飞行控制方法进行了检验。进行了轨迹分析,以生成飞行器的三维飞行路径,以检查飞行特性。利用带有GAMBIT的ANSYS FLUENT流体动力学软件和Solidworks CAD软件研究与主动尾部翘曲相对应的空气动力学扭矩和重力扭矩。结果提供了证据,表明翘曲的尾部对基本操纵具有足够的控制权。

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