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Modelling aluminium energy storage systems comprising ionic liquid and aqueous electrolyte cells: Case studies in high-performance electric vehicles

机译:建模铝能储存系统,包括离子液体和水电解质细胞:高性能电动汽车的案例研究

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This paper models hybrid energy storage systems (HESSs) composed of ionic liquid Al-ion batteries (ILAIBs) and aqueous Al-ion batteries (AAIBs) for electric vehicle (EV) propulsion. Al-ion batteries are being developed as alternatives to existing battery technologies as Al is an abundant, non-toxic material. Al-ion batteries can be tailored for high power density or high energy density and as such are suitable for HESSs for EVs. In this paper, Al-based chemistries are substituted for one or both of the Li-ion battery (LIB) and supercapacitor (SC) components of the benchmark LIB-SC HESS, and thus the ILAIB-SC, LIB-AAIB, and ILAIB-AAIB HESSs are proposed and modelled with a high-performance EV. The performance of each HESS is compared with that of the conventional LIB-SC HESS, in terms of mass, volume, initial costs, and vehicle lifetime costs. Results show that using the ILAIB as the main energy storage in the HESS can reduce vehicle lifetime costs by 16% as compared with the LIB-based HESSs, but the volume of ILAIB-based HESSs is ten times that of LIB-based HESS. Using the AAIB as the second energy storage can reduce vehicle lifetime costs by 2% but also benefit from 2% less mass and 1% less volume as compared with the SC-based HESSs. Considering both financial costs and feasibility of deployment, the LIB-AAIB HESS is the most viable hybrid combination for high-performance EV propulsion at the present stage.
机译:本文型号模型由离子液体Al离子电池(ILAIB)和用于电动车辆(EV)推进的离子液体Al离子电池(ILAIB)和水性al离子电池(AAIB)组成。作为AL的现有电池技术的替代品,正在开发AL离子电池是一种丰富的无毒材料。可以针对高功率密度或高能量密度来定制Al离子电池,因此适用于EVS的Hesss。本文,基于Al的化学物质代替了基准Lib-Sc Hess的锂离子电池(Lib)和超级电容器(SC)组件中的一个或两个,因此是ILAIB-SC,LIB-AAIB和ILAIB -aaib hesss被提出并用高性能EV建模。在质量,体积,初始成本和车寿命成本方面,每个HESS的性能与传统的Lib-Sc Hess的性能进行比较。结果表明,与赫斯中的主要能量储存使用ILAIB可以与基于LIB的Hesss相比将车寿成本降低16%,但基于Lib的Hesss的体积是基于Lib的Hess的十倍。使用AAIB作为第二储能可以将车辆寿命成本降低2%,但与基于SC的Hesss相比,体积减少2%,体积减少1%。考虑到部署的财务成本和可行性,LIB-AAIB HESS是目前阶段高性能EV推进的最活泼的混合组合。

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