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Identification of application fields for electrical propulsion techniques and personal aerial vehicles

机译:电气推进技术应用领域的识别与个人空中车辆

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Electric flight is supposed to be the next step towards a more sustainable air transport, especially with respect to unmanned aircraft systems (UAS). However, to determine the revolutionary character of electric flight we have to compare it to aircrafts driven by fossil fuels with respect to their technical abilities. Technical properties determining potential application fields are assumed to be maximum range and maximum speed (travel time). To identify application fields and the competition within we, first, collected the technical properties of 197 vehicles of type personal aerial vehicle (PAV), helicopter, small aircraft transportation system (SAT) and business jets, and second, apply agglomerative hierarchical clustering and density-based spatial clustering of applications with noise (DBSCAN) using range and maximum speed. Electrical propulsion techniques are found to fall into the low range clusters and electrical and hybrid technologies dominate the very short ranges reaching up to 200 km. Though, helicopters are active in these ranges and superior regarding number of passengers plus maximum speed, they cannot compete with PAVs regarding costs, and even more important, environmental sustainability. In addition, the states of development of PAVs competing to helicopters with regard to range are still in scaled prototype or in concept phase. Thus, our findings underline the run for urban air mobility (UAM) as an application of electric propulsion techniques due to short ranges at slow speeds and the possibility of decreasing the environmental impact of mobility. Moreover, we cannot identify any competition of the new PAV technologies with classical aerial vehicles.
机译:电动飞行应该是更加可持续的空中运输的下一步,特别是对于无人驾驶飞机系统(UAS)。然而,为了确定电气飞行的革命性质,我们必须将其与化石燃料驱动的飞机进行比较,以及他们的技术能力。技术属性确定潜在的应用领域被认为是最大范围和最大速度(旅行时间)。要识别应用领域和我们内部的竞争,首先,收集了197辆型个人空中车辆(PAV),直升机,小型飞机运输系统(SAT)和商业喷气机的技术性能,第二,应用附聚层次聚类和密度基于使用范围和最大速度的噪声(DBSCAN)的应用程序的空间聚类。发现电气推进技术落入低范围集群,电气和混合技术主导了达到200公里的非常短的范围。虽然,直升机在这些范围内活跃,同时乘客数量加上最高速度,它们无法与频率竞争成本,更重要,环境可持续性。此外,竞争在范围内竞争直升机的PAV的发展仍然处于缩放的原型或概念阶段。因此,我们的研究结果强调了城市空移(UAM)的运行,因为由于短的速度短的范围和降低流动性环境影响的可能性,因此电动推进技术的应用。此外,我们无法识别新的PAV技术与古典航空车辆的竞争。

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