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Impact of electric propulsion technology and mission requirements on the performance of VTOL UAVs

机译:电力推进技术的影响及使命要求对VTOL无人机的表现

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One of the engineering challenges in aviation is the design of transitioning vertical take-off and landing (VTOL) aircraft. Thrust-borne flight implies a higher mass fraction of the propulsion system, as well as much increased energy consumption in the take-off and landing phases. This mass increase is typically higher for aircraft with a separate lift propulsion system than for aircraft that use the cruise propulsion system to support a dedicated lift system. However, for a cost-benefit trade study, it is necessary to quantify the impact the VTOL requirement and propulsion configuration has on aircraft mass and size. For this reason, sizing studies are conducted. This paper explores the impact of considering a supplemental electric propulsion system for achieving hovering flight. Key variables in this study, apart from the lift system configuration, are the rotor disk loading and hover flight time, as well as the electrical systems technology level for both batteries and motors. Payload and endurance are typically used as the measures of merit for unmanned aircraft that carry electro-optical sensors, and therefore the analysis focuses on these particular parameters.
机译:航空中的工程挑战之一是过渡垂直起飞和着陆(VTOL)飞机的设计。推力传播的飞行意味着推进系统的较高质量分数,以及增加起飞和着陆阶段的能耗增加。对于使用巡航推进系统支持专用提升系统的飞机,这种质量增加通常适用于具有单独的提升推进系统的飞机。然而,对于成本效益贸易研究,有必要量化VTOL要求和推进配置对飞机质量和尺寸的影响。因此,进行大小写研究。本文探讨了考虑辅助电动推进系统实现悬停飞行的影响。本研究中的关键变量除了电梯系统配置之外,是转子盘装载和悬停飞行时间,以及电池和电机的电气系统技术水平。有效载荷和耐久性通常用作携带电光传感器的无人飞机的优点测量,因此分析侧重于这些特定参数。

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