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小型长航时太阳能无人机总体设计优化方法
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V272

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国家自然科学基金(61603304)


An Optimization Method of Overall Design in Small Longendurance Solar Powered UAV
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    摘要:

    为解决小型长航时太阳能无人机总体设计中能量获取过程精确度低、设计参数区间寻优困难的问题,基于能量平衡原理提出了“小型低空长航时太阳能无人机总体设计优化方法”。为准确表征太阳辐射强度,引入了大气质量和大气透明度系数,用直射辐射强度和散射辐射强度建立了无人机的太阳辐射模型;基于太阳能飞机能量原理,结合太阳辐射模型和能量关系,统计无人机质量分配并参数化建模,建立了能量平衡模型并进行了验证;提出跨夜剩余航时的概念,以跨夜剩余航时最大化为目标,利用遗传算法进行优化,得到最优设计参数和方案。以6月22日在西安执飞为例进行优化设计,研制试验样机进行了飞行试验。研究表明,验证机具备跨夜飞行能力。

    Abstract:

    Aimed at the problems that the accuracy of energy acquisition process is low and the design parameters are difficult to be optimized in the overall design of small longendurance solar powered unmanned aerial vehicle (UAV), an optimization method of the overall design in small lowaltitude longendurance solar powered UAV is put forward based on the principle of energy balance. In order to accurately characterize the solar radiation intensity, the atmospheric mass and atmospheric transparency coefficient are introduced. A solar radiation model of the UAV is established with direct radiation intensity and scattered radiation intensity. Based on the principle of solar energy, combining with solar radiation model and energy relationship, statistical analysis of UAV mass distribution and parametric modeling, the energy balance model is established and verified. A concept of remaining time after crossnight flight is proposed, and the optimal design parameters and schemes are obtained by using the genetic algorithm to optimize the maximum remaining time after crossnight flight. Taking the flying in Xi’an in June 22nd as an example, the optimal design is carried out, and the prototype is developed to carry out flight test. The result shows that the prototype has the ability of crossnight flight.

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李赛,周伟,罗建军,谢飞.小型长航时太阳能无人机总体设计优化方法[J].空军工程大学学报,2018,19(1):1-8

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  • 在线发布日期: 2018-03-06
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