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All Electric Aircraft Mid-Air Recharging via Wireless Power Transfer: Battery Requirement Study

机译:所有电气飞机通过无线电源传输中空再充电:电池要求研究

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The all-electric-aircraft (AEA) has the advantage of low engine noise and low carbon dioxide emission. However, the current state of art battery technology has a much lower specific energy than the fossil fuel. As a result, the AEA has shorter overall flight duration if it is fully relying the battery system as sole energy source. Therefore, mid-air recharging (MAR) on AEA's battery system via wireless power transfer (WPT) from space solar power (SSP) satellite constellation is considered the key technology to enable long flight duration. This paper studies the preliminary requirement of battery and recharging method for AEA applications. The recharging method includes both induction based WPT on ground and MAR via SSP satellites. Studies show that the development maturity of Lithium-Sulphur and Lithium-Air batteries are the key technologies to enable commercial AEA in the future. Furthermore, it shows that fully earth coverage of SSP satellite constellation is not required. The long AEA flight duration can be achieved via a constellation design which enables the AEA to be recharged for 45minutes with 20 minutes of MAR unavailability.
机译:全电气飞机(AEA)具有低发动机噪声和低碳二氧化碳排放的优点。然而,目前的艺术电池技术的能量远低于化石燃料。结果,如果它完全依赖电池系统作为唯一能量来,AEA具有更短的整体飞行持续时间。因此,来自空间太阳能电力(SSP)卫星星座的无线电力传输(WPT)的AEA电池系统中的中空充电(MAR)被认为是能够长飞行持续时间的关键技术。本文研究了AEA应用的电池和再充电方法的初步要求。充电方法包括基于WPT在地面和MAR通过SSP卫星的诱导。研究表明,锂 - 硫和锂气电池的发展成熟度是未来商业AEA的关键技术。此外,它表明,不需要完全接地覆盖SSP卫星星座。通过星座设计可以实现长AEA飞行持续时间,这使得AEA能够再充电45分钟,以20分钟的MAR不可用。

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