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Parameters determination for concept design of solar-powered, high-altitude long-endurance UAV

机译:太阳能高空长寿命无人机概念设计的参数确定

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摘要

Purpose - The purpose of this paper is to propose a methodology to determine the designing parameters for solar powered high-altitude, long-endurance (HALE) unmanned aerial vehicles (UAV). Design/methodology/approach - By depicting solar power distribution on earth, along with the efficiencies analysis of photo-voltaic cells (P-cell) and lithium-sulfur battery (LS-battery), the influence of energy to concept design parameters is analyzed first. Second, the lift efficiency is determined from ground to 20 km for HALE UAV. Third, the methodology to determine design parameters for HALE UAV is generalized by analyzing the carrying ability of some famous HALE UAVs, such as Zephyr, Helios, and so on. Findings - Energy is the key constraint on design of HALE UAV. The questions about where HALE UAVs are capable of operating and how long they could work can be answered according to power density distribution on earth. The total mass of HALE UAV can be divided into two parts: one is the constant mass, the other is the mass increasing with area of wing. The total mass can be estimated by the former one; the later one plays an important role in estimating wing load in the designing process. Practical implications - The only way to enhance carrying ability of HALE UAVs is to redistribute their wing load: lighter structure materials and a better method to fix P-cell with lighter fundus are the key technologies to enhance HALE UAVs' carrying ability. At current technological levels, it is not easy to design a UAV to achieve the aim of high-altitude long-endurance. Originality/value - This paper presents a very efficient and convenient method to determine the designing parameters of HALE UAV.
机译:目的-本文的目的是提出一种方法来确定太阳能高空,长寿命(HALE)无人机(UAV)的设计参数。设计/方法/方法-通过描绘地球上的太阳能发电分布以及光伏电池(P电池)和锂硫电池(LS电池)的效率分析,分析了能量对概念设计参数的影响第一。其次,HALE UAV的起升效率是从地面到20公里。第三,通过分析一些著名的HALE无人机(如Zephyr,Helios等)的承载能力,概括了确定HALE无人机设计参数的方法。调查结果-能源是HALE无人机设计的关键约束。根据地球上的功率密度分布,可以回答有关HALE无人机可以在哪里运行以及可以工作多长时间的问题。 HALE无人机的总质量可分为两部分:一个是恒定质量,另一个是随机翼面积增加的质量。总质量可以由前者估算。后者在设计过程中在估计机翼载荷方面起着重要作用。实际意义-增强HALE无人机承载能力的唯一方法是重新分配机翼载荷:更轻的结构材料以及更好的用更轻的眼底固定P细胞的方法是增强HALE无人机承载能力的关键技术。在目前的技术水平上,设计无人机来实现高空长寿命的目标并不容易。原创性/价值-本文提出了一种非常有效,便捷的方法来确定HALE无人机的设计参数。

著录项

  • 来源
    《Aircraft engineering》 |2013年第4期|293-303|共11页
  • 作者单位

    College of Aerospace Science and Engineering, National University of Defense Technology,Changsha, People's Republic of China;

    College of Aerospace Science and Engineering, National University of Defense Technology,Changsha, People's Republic of China;

    College of Aerospace Science and Engineering, National University of Defense Technology,Changsha, People's Republic of China;

    College of Aerospace Science and Engineering, National University of Defense Technology,Changsha, People's Republic of China;

    College of Aerospace Science and Engineering, National University of Defense Technology,Changsha, People's Republic of China;

    College of Aerospace Science and Engineering, National University of Defense Technology,Changsha, People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solar power; Flight dynamics; Aircraft design; Parameters determination;

    机译:太阳能;飞行动力学;飞机设计;参数确定;

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