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Perpetual Solar-Powered Flight across Regions around the World for a Year-Long Operation

机译:一年一度的全球永久性太阳能飞行

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This study aims to promote the conventional solar-powered unmanned aerial vehicle (UAV) to be used as a satellite known as a pseudo-satellite (pseudolite). The applications of UAV as a satellite are still in the initial stages because these proposed UAVs are required to fly for long hours at a specified altitude. Any solar-powered system requires extensive mission operation planning to ensure sufficient power to sustain a level flight. This study simulates the optimal UAV configurations at various global locations, and determines the feasibility of a solar-powered UAV to sustain a continuous mission. This study is divided into two different phases. An all-year operation of the average UAV (AVUAV) is simulated in Phase One and is designed specifically for each of 12 cities, namely, Ottawa, Honolulu, Quito, Tahiti, Brasilia, London, Riyadh, Tokyo, Kuala Lumpur, Accra, Port Louis, and Suva. Phase Two is a simulation of a solar-powered UAV design model known as 1UAV, applicable to any city around the world for a year-long flight. The findings state that a single UAV design is sufficient to operate continuously around the world if its detailed mission path planning has been defined.
机译:这项研究旨在促进将常规的太阳能无人飞行器(UAV)用作人造卫星(pseudolite)。无人机作为卫星的应用仍处于起步阶段,因为这些拟议的无人机需要在指定的高度长时间飞行。任何太阳能系统都需要进行广泛的任务运行计划,以确保有足够的动力来维持水平飞行。这项研究模拟了全球各个地方的最佳无人机配置,并确定了太阳能无人机维持连续任务的可行性。这项研究分为两个不同的阶段。第一阶段模拟了全年平均无人飞行器(AVUAV)的全年运行情况,并专门针对以下12个城市中的每个城市进行了设计:渥太华,檀香山,基多,塔希提岛,巴西利亚,伦敦,利雅得,东京,吉隆坡,阿克拉,路易港和苏瓦。第二阶段是对称为1UAV的太阳能无人机设计模型的仿真,适用于全球任何城市长达一年的飞行。调查结果表明,如果已经定义了详细的任务路径计划,那么单个无人机设计就足以在全球范围内连续运行。

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