A Case Study of a Methodological Approach to the Verification of UAV Propeller Performance

Goran Vorotović, Jela Burazer, Aleksandar Bengin, Časlav Mitrović, Miloš Januzović, Nebojša Petrović, Djordje Novković
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Abstract

Understanding the behaviour of propeller-driven aircraft has been the primary goal of aviation since the brothers Orville and Wilbur Wright. Traction characteristics, which have over time become dominant in the field of aviation in addition to thrust, both examined and analysed, nevertheless represent a sort of oxymoron in modern aviation. In this sense, the authors of the paper present the possibilities of static performance characteristics and vibrations of aircraft propellers through the analysis of low-powered aircraft. The use of low-powered aircraft as “expendable” material is the reality we live in, but ensuring the safety of their use is the primary goal of the researchers who deal with this issue. Accordingly, the authors of this paper present indications of the methodology of testing the blades of low-power aircraft in the atmosphere with an observation that the same indications can be used with aircraft of higher power, as well as with the aircraft on celestial bodies that have not been tested or available. A test bench for the quantification of thrust, torque, and vibration of small unmanned aerial vehicles’ (UAV) vehicle propellers is presented. The obtained results realistically describe the complex behaviour of propellers in operation.
无人机螺旋桨性能验证方法的实例研究
自奥维尔·莱特和威尔伯·莱特兄弟以来,了解螺旋桨驱动飞机的行为一直是航空业的主要目标。随着时间的推移,牵引力特性在航空领域中除了推力之外已经成为主导,然而,无论是研究还是分析,都代表了现代航空中的一种矛盾修饰法。在这个意义上,作者通过对低功率飞机的分析,提出了飞机螺旋桨静态性能特性和振动的可能性。使用低功率飞机作为“消耗品”材料是我们生活的现实,但确保其使用的安全性是研究人员处理这个问题的主要目标。因此,本文作者提出了在大气中测试低功率飞机叶片的方法指示,并观察到同样的指示可以用于更高功率的飞机,以及尚未测试或可用的天体上的飞机。提出了一种用于小型无人机螺旋桨推力、扭矩和振动量化的试验台。所得结果真实地描述了螺旋桨在运行中的复杂行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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