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Experimental investigation on lift generation of flapping MAV with insect wings of various species

机译:各种物种昆虫翅膀扑升生成的实验研究

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Purpose - The purpose of this paper is to experimentally analyze the effect of wing shape of various insects of different species in a flapping micro aerial vehicle (MAV). Design/methodology/approach - Six different wings are fabricated for the MAV configuration, which is restricted to the size of 15 cm length and width; all wings have different surface area and constant span length of 6 cm. The force is being measured with the help of a force-sensing resistor (FSR), and the coefficients of lift were calculated and compared. Findings - This study shows that the wing "Tipula sp" has better value of lift than other insect wings, except for the negative angle of attacks. The wing "Aeshna multicolor" gives the better values of lift in negative angles of attack. Practical implications - This paper lays the foundation for the development of flapping MAVs with the insect wings. This type of wing can be used for spying purpose in the military zone and also can be used to survey remote and dangerous places where humans cannot enter. Originality/value - This paper covers all basic insect wing configurations of different species with exact mimics of the veins. As the experimental investigation was carried for different angle of attacks, velocities and flapping frequencies, this paper can be used as reference for future flapping wing MAV developers.
机译:目的 - 本文的目的是通过在拍打微空中飞行器(MAV)中进行各种昆虫的翼形翼形状的翼形。设计/方法/方法 - 为MAV配置制造了六种不同的翅膀,其限制在15厘米长和宽度的尺寸;所有翼都具有不同的表面积和恒定跨度长度为6厘米。借助于力传感电阻(FSR)测量力,并计算升力系数并进行比较。结果 - 本研究表明,除了负攻角之外,机翼“Tipula SP”的升力值比其他昆虫翅膀更好。机翼“Aeshna MultiColor”为攻击的负角度提供了更好的升力值。实际意义 - 本文为昆虫翅膀的扑击扑击扑击的基础。这种类型的翼可用于在军用区间谍目的,也可用于调查人类无法进入的远程和危险的地方。原创/价值 - 本文涵盖了不同物种的所有基本昆虫翼配置,精确模仿静脉。随着实验研究进行不同的攻击角度,速度和拍摄频率,本文可用作未来扑翼MAV开发人员的参考。

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