论文标题

NEDERWRONE:杂种升降机,杂交能氢无人机

The NederDrone: A hybrid lift, hybrid energy hydrogen UAV

论文作者

De Wagter, Christophe, Remes, Bart, Smeur, Ewoud, van Tienen, Freek, Ruijsink, Rick, van Hecke, Kevin, van der Horst, Erik

论文摘要

许多无人机应用都需要垂直起飞和降落(VTOL),并结合非常长或耐力。已经提出了过渡无人机将直升机的VTOL功能与固定翼飞机的有效远程飞行特性相结合。但是对于许多电动长耐力应用来说,能量仍然是一种瓶颈。尽管太阳能技术和电池技术已经有所改善,但在更粗糙的条件下,它们仍然缺乏许多现实情况所需的能量或总能量。在本文中,我们介绍了NEDERDRONE,这是一种混合升降机,混合能源氢供电无人机,可以使用12个螺旋桨进行垂直起飞和降落,同时由于其固定翅膀在向前飞行时有效飞行。该能量是从氢驱动的燃料电池组合的混合物中提供的,以存储大量的能量和电池电量,以实现高功率情况。氢存储在加压缸中,可在该圆柱体中进行优化。本文分析了该概念的选择,实施的安全元素,电子和飞行控制,并显示了飞行数据,包括海上3H38飞行,启动并着陆了一艘小型移动船。

A lot of UAV applications require vertical take-off and landing (VTOL) combined with very long-range or endurance. Transitioning UAVs have been proposed to combine the VTOL capabilities of helicopters with the efficient long-range flight properties of fixed-wing aircraft. But energy is still a bottleneck for many electric long endurance applications. While solar power technology and battery technology have improved a lot, in rougher conditions they still respectively lack the power or total amount of energy required for many real-world situations. In this paper, we introduce the NederDrone, a hybrid lift, hybrid energy hydrogen-powered UAV which can perform vertical take-off and landings using 12 propellers while flying efficiently in forward flight thanks to its fixed wings. The energy is supplied from a mix of hydrogen-driven fuel-cells to store large amounts of energy and battery power for high power situations. The hydrogen is stored in a pressurized cylinder around which the UAV is optimized. This paper analyses the selection of the concept, the implemented safety elements, the electronics and flight control and shows flight data including a 3h38 flight at sea, starting and landing on a small moving ship.

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