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A review of compliant transmission mechanisms for bio-inspired flapping-wing micro air vehicles

机译:生物启发型翼翼微型航空公司兼容传动机制综述

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摘要

Flapping-wing micro air vehicles (FWMAVs) are a class of unmanned aircraft that imitate flight characteristics of natural organisms such as birds, bats, and insects, in order to achieve maximum flight efficiency and manoeuvrability. Designing proper mechanisms for flapping transmission is an extremely important aspect for FWMAVs. Compliant transmission mechanisms have been considered as an alternative to rigid transmission systems due to their lower the number of parts, thereby reducing the total weight, lower energy loss thanks to little or practically no friction among parts, and at the same time, being able to store and release mechanical power during the flapping cycle. In this paper, the state-of-the-art research in this field is dealt upon, highlighting open challenges and research topics. An optimization method for designing compliant transmission mechanisms inspired by the thoraxes of insects is also introduced.
机译:拍打翼微型航空器(FWMAV)是一类无人驾驶飞机,用于模仿天然生物的飞行特征,如鸟类,蝙蝠和昆虫,以实现最大的飞行效率和机动性。 设计适当的拍打传输机制是FWMAV的一个极其重要的方面。 由于它们较低的部件数量较低,因此符合符合的传输机制被认为是刚性传输系统的替代方案,从而减少了总重量,较低的能量损失,归功于部件之间的几乎或实际上没有摩擦,并且同时,能够 在拍打周期内存储和释放机械电源。 本文介绍了这一领域的最先进的研究,突出了开放的挑战和研究主题。 还介绍了设计灵感的柔顺传动机制的优化方法。

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