Electrical Energy Storage Design Space Exploration for a Hybrid-Electric Six Passenger Quadrotor

G. L. Thomas, Brian P. Malone, Jeffryes W. Chapman, J. Csank
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引用次数: 1

Abstract

Hybrid-electric architectures are a promising means to achieve clean and efficient aircraft propulsion needed for small, short-range electric vertical takeoff and landing (eVTOL) class vehicles. This paper explores the design space for a six-passenger quadrotor hybrid-electric propulsion system and shows that hybrid architectures that are more efficient than engine-only architectures can be built with near-term battery technology (~150 Wh/kg at the pack level). Data obtained shows that hybrid-electric propulsion systems can achieve 28% block fuel reduction and 27% total energy cost savings over a 120 nautical mile (nmi) mission compared to conventional turboshaft architectures. This work suggests that hybrids are likely the most efficient architectures that can be produced in the near term for this class of vehicle and motivates further development in this area.
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混合动力六乘四旋翼飞行器储能设计空间探索
混合动力架构是实现小型短程电动垂直起降(eVTOL)级飞行器所需的清洁高效飞机推进的一种很有前途的手段。本文探讨了六人座四旋翼混合动力推进系统的设计空间,并表明混合动力架构比纯发动机架构更高效,可以在近期使用电池技术(电池组级约150 Wh/kg)。获得的数据显示,与传统涡轮轴结构相比,混合动力推进系统在120海里(nmi)的任务中可以减少28%的块燃料,节省27%的总能源成本。这项研究表明,混合动力汽车可能是短期内这类汽车中最高效的架构,并将推动这一领域的进一步发展。
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