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首页> 外文期刊>IEEE Transactions on Robotics >Liftoff of a Motor-Driven, Flapping-Wing Microaerial Vehicle Capable of Resonance
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Liftoff of a Motor-Driven, Flapping-Wing Microaerial Vehicle Capable of Resonance

机译:具有共振能力的电动翼翼微动飞行器的升空

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摘要

This study presents the design of a novel minimalist liftoff-capable flapping-wing microaerial vehicle. Two wings are each directly driven by a geared pager motor by utilizing an elastic element for energy recovery, resulting in a maximum lift-to-weight ratio of 1.4 at 10 Hz for the 2.7 g system. Separate directly driven wings allow the system to both resonate and control individual wing flapping angle, reducing necessary power consumption, as well as allowing the production of roll and pitch body torques. With a series of varied prototypes, system performance is examined with change in wing offset from center of rotation and elastic element stiffness. Prototype liftoff is demonstrated with open loop driving a tethered prototype without guide wires. A dynamic model of the system is adapted and compared with the prototype experimental results for later use in prototype optimization.
机译:这项研究提出了一种新型的具有极小提离能力的扑翼微空中飞行器的设计。齿轮式传呼机电机通过利用弹性元件进行能量回收,分别直接驱动两个机翼,因此对于2.7 g系统,在10 Hz时最大升力重量比为1.4。单独的直接驱动机翼使系统能够共振并控制单个机翼的拍打角度,从而减少必要的功率消耗,并允许产生侧倾和俯仰体扭矩。使用一系列不同的原型,通过改变机翼偏离旋转中心的偏移量和弹性元件的刚度来检查系统性能。通过开环驱动系留原型而无需导丝来演示原型提升。调整系统的动态模型,并将其与原型实验结果进行比较,以供以后在原型优化中使用。

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