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Performance and Stability of an Agile Tail-less MAV with Flexible Articulated Wings

机译:具有柔性铰接翼的敏捷无尾MAV的性能和稳定性

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摘要

This paper considers the problems of (a) modelling the udight mechanics of a tail-less MAV equipped with udexible articulated wings, and (b) the analysis of its turning performance. The wings are assumed to have two degrees of freedom - heave and twist. They areudassumed to be actuated from the root, which is the abstraction of an experimental control mechanism being developed by the authors. The dihedral and twist angles at the wing root are controlled. A novel actuator concept of axial tension to control wing stiffness has beenudexplored in this paper. It is shown that axial tension in the wing has a significant effect on the turning performance of the aircraft, although the effect is not uniformly beneficial in nature. The effect of udexibility on the steady state turning performance of the aircraft has been demonstrated by comparing it with that of a rigid aircraft, and with that of a similar aircraft possessing a wing with different elastic properties.
机译:本文考虑了以下问题:(a)对装备有 udexible铰接机翼的无尾MAV的 udight力学建模,以及(b)分析其转向性能。机翼假定具有两个自由度-升沉和扭曲。假定它们是从根部驱动的,这是作者正在开发的实验控制机制的抽象。机翼根部的二面角和扭曲角受到控制。本文已经探索了一种新颖的轴向张力致动器概念来控制机翼刚度。示出了机翼中的轴向张力对飞机的转弯性能具有显着影响,尽管该效果在本质上并不是统一地有益的。通过与刚性飞机以及具有机翼具有不同弹性特性的类似飞机的对比,证明了可混性对飞机稳态转弯性能的影响。

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