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Flight paths for a regenerative fuel cell based high altitude long endurance unmanned aerial vehicle

机译:基于再生燃料电池的高空长寿命无人飞行器的飞行路径

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Unmanned aerial vehicles (UAVs) are being developed worldwide for the purpose of communications or military activities. We considered a Regenerative fuel cell (RFC)-based High altitude long endurance (HALE) UAVs because it can regenerate hydrogen and oxygen by using power of photovoltaic arrays during the day. To make an RFC-based HALE UAVs fly continuously, the study of flight paths is essential and an easy approach using the current technologies. We introduced the four cases of flight paths and determined their required energies. It is concluded that climb-after-glide flight is best feasible flight path among four flight paths for RFC system-based HALE UAVs due to air density and time of operating motor. In addition to climb-after-glide flight other flight strategies enable the aircraft to continuously conduct missions in limited range of an altitude, which validated that the RFC system is suitable for use in a HALE UAVs.
机译:为了通信或军事活动,全世界正在开发无人飞行器(UAV)。我们考虑了基于可再生燃料电池(RFC)的高海拔长时间耐力(HALE)无人机,因为它可以在白天通过利用光伏阵列的能量来再生氢气和氧气。为了使基于RFC的HALE无人机持续飞行,飞行路径的研究至关重要,并且是使用当前技术的简便方法。我们介绍了四种飞行路径情况,并确定了它们所需的能量。结论是,由于空气密度和运行时间的不同,滑行后爬升飞行是基于RFC系统的HALE无人机在四个飞行路径中最可行的飞行路径。除了滑翔后飞行外,其他飞行策略还可以使飞机在有限的高度范围内连续执行任务,这证明RFC系统适用于HALE无人机。

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