太阳能无人机持久飞行航迹优化

Joo-Seok Lee, Hyeon-Bo Park, Kee-Ho Yu
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引用次数: 4

摘要

太阳能无人机的持久飞行能力是执行各种任务的重要因素。在有限的条件下,如太阳能电池效率或太阳射线辐射量,需要有效的操作来实现连续飞行。为了提高太阳能无人机的续航飞行能力,本研究尝试通过控制飞行高度和飞行器姿态控制,利用重力势能优化飞行路径。能量模型包括太阳位置、飞行器姿态和空气动力学特性,并根据飞行高度的变化考虑了空气密度和大气透射率的影响。通过实例研究,进行了耐力飞行的能量优化。仿真结果表明,与水平飞行相比,飞行路径优化提高了飞机的能量获取量,降低了电池消耗,表明航迹优化对于提高飞机的续航能力是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flight path optimization of solar powered UAV for endurance flight
Endurance flight capability of solar powered UAV is an important element in performing various missions. In the limited conditions such as solar cell efficiency or sunray radiant quantities, an efficient operation is required to achieve continuous flight. In order to improve endurance flight capability of solar powered UAV, this study tried to optimize flight path through the use of gravitational potential energy by controlling flight altitude and through aircraft attitude control. The energy model includes the solar position, aircraft attitude, and aerodynamics characteristics, and the influence of air density and atmospheric transmittance was considered according to flight altitude change. Through a case study, energy optimization was performed for endurance flight. As a result of simulation, compared to level flight, energy acquisition increased and battery use decreased, which indicates that flight path optimization is effective for improvement of endurance flight capability.
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