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Mission Analysis of Solar UAV for High-Altitude Long-Endurance Flight

机译:太阳能无人机在高空长途飞行中的任务分析

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This study presents the analysis of a hybrid solar high-altitude, long-endurance unmanned aerial vehicle (HALE UAV) designed to perform meteorological observation and surveillance-related missions. For this purpose, the methodology minimizes the energy consumption of the aerial platform considering the energy balance for a climb, cruise, and descent cycle. The flight methods take into account the seasonal and diurnal variation of solar radiation in the middle latitudes. In addition, to reduce the weight of the onboard battery and regenerative fuel cell (RFC), this study analyzes the daily mission profile that consists of a climb, high-altitude cruise, descent, low-altitude cruise, and reclimb. During the daytime cruise at 18km, extra energy is stored in the RFC. In the nighttime, the aircraft descends to 14km using energy stored in the RFC. On the following day, the aircraft climbs again to 18km and cruises during the daytime. The energy consumption of this one-day mission profile is compared to that of a continuous-cruise flight at 18-km altitude for a day. The effects of takeoff time on the total time and energy consumption to reach the mission altitude are investigated, and the drift due to the westerlies are calculated. The analysis of the configuration parameters and aerodynamic coefficients was conducted using software tools. (c) 2018 American Society of Civil Engineers.
机译:这项研究提出了一种用于执行气象观测和监视相关任务的混合型太阳能高空,长寿命无人飞行器(HALE UAV)的分析。为此,考虑到爬升,巡航和下降周期的能量平衡,该方法可将高空平台的能量消耗降至最低。飞行方法考虑了中纬度地区太阳辐射的季节性和昼夜变化。此外,为减轻车载电池和可再生燃料电池(RFC)的重量,本研究分析了每日任务概况,包括爬升,高空巡航,下降,低空巡航和爬升。在18公里的白天航行中,多余的能量存储在RFC中。在夜间,飞机使用RFC中存储的能量下降到14公里。第二天,飞机再次爬升至18公里,并在白天巡航。将这一天的任务配置文件的能耗与18公里高空连续巡航一天的能耗进行了比较。研究了起飞时间对到达任务高度的总时间和能量消耗的影响,并计算了由于西风引起的漂移。使用软件工具对配置参数和空气动力学系数进行了分析。 (c)2018年美国土木工程师学会。

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