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Biomimicry of the Hawk Moth Manduca sexta (L.) Produces an Improved Flapping-Wing Mechanism

机译:鹰蛾的仿生Manduca sexta(L.)产生了改进的拍打翼机制

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摘要

Flapping-wing micro air vehicles (FWMAVs) that mimic the flight capabilities of insects have been sought for decades. Core to the vehicle’s flight capabilities is the mechanism that drives the wings to produce thrust and lift. This article describes a newly designed flapping-wing mechanism (FWM) inspired by the North American hawk moth, . Moreover, the hardware, software, and experimental testing methods developed to measure the efficiency of insect-scale flapping-wing systems (i.e., the lift produced per unit of input power) are detailed. The new FWM weighs 1.2 grams without an actuator and wings attached, and its maximum dimensions are 21 × 24 × 11 mm. This FWM requires 402 mW of power to operate, amounting to a 48% power reduction when compared to a previous version. In addition, it generates 1.3 gram-force of lift at a flapping frequency of 21.6 Hz. Results show progress, but they have not yet met the power efficiency of the naturally occurring . Plans to improve the technique for measuring efficiency are discussed as well as strategies to more closely mimic the efficiency of the -inspired FWM.
机译:数十年来,人们一直在寻找模仿昆虫飞行能力的襟翼微型飞机(FWMAV)。车辆飞行能力的核心是驱动机翼产生推力和升力的机制。本文介绍了一种新设计的拍打翼机构(FWM),其灵感来自北美鹰蛾。此外,还详细介绍了用于测量昆虫标度拍打翼系统效率(即每单位输入功率产生的升力)的硬件,软件和实验测试方法。新型FWM重量为1.2克(不带致动器和机翼),最大尺寸为21×24×11 mm。该FWM需要402 mW的功率才能运行,与以前的版本相比,功率降低了48%。此外,它在21.6 Hz的拍动频率下产生1.3克力的升力。结果显示了进步,但尚未达到自然发生的功率效率。讨论了改进测量效率技术的计划以及更紧密地模仿FWM效率的策略。

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