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An investigation into energy harvesting and storage to power a more electric regional aircraft

机译:对电力区域飞机供电的能量收集和储存的调查

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This is an investigation for a more electric regional aircraft, considering the ATR 72 aircraft as an example and the electrification of its four double slotted flaps, which were estimated to require an energy of 540 Wh for takeoff and 1780 Wh for landing, with a maximum power requirement of 35.6 kW during landing. An analysis and evaluation of three energy harvesting systems has been carried out, which led to the recommendation of a combination of a piezoelectric and a thermoelectric harvesting system providing 65% and 17%, respectively, of the required energy for the actuators of the four flaps. The remaining energy may be provided by a solar energy harvesting photovoltaic system, which was calculated to have a maximum capacity of 12.8 kWh at maximum solar irradiance. It was estimated that a supercapacitor of 232 kg could provide the energy storage and power required for the four flaps, which proved to be 59% of the required weight of a lithium iron phosphate (LFP) battery while Hie supercapacitor also constitutes a safer option.
机译:这是一架更加电气区域飞机的调查,考虑到ATR 72飞机作为其四个双旋转襟翼的电气化,估计需要540WH的电能和1780 WH用于着陆,最大着陆期间35.6千瓦的电力要求。已经进行了三种能量收集系统的分析和评估,这导致了压电和热电收集系统的组合的推荐,分别提供了65%和17%的四个襟翼的执行器所需的能量。剩余的能量可以由太阳能收集光伏系统提供,该系统计算成在最大太阳辐照度下具有12.8千瓦时的最大容量。据估计,232千克的超级电容器可以为四个襟翼提供所需的能量存储和功率,这证明了磷酸铁锂(LFP)电池所需重量的59%,而Hie超级电容器也构成了更安全的选择。

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