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Design and Optimization of An Electric Vehicle with Two Battery Cell Chemistries

机译:具有两种电池化学成分的电动汽车的设计与优化

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This paper describes the design and optimization of an electric vehicle (EV) prototype which will be built as part of a large collaborative project between researchers and industry. The goal is to develop a long-range EV that can travel 600km on a single charge. To keep the battery mass reasonable, the proposed design combines lithium-ion (Li-ion) cells with lithium-silicon (Li-Si) cells, an emerging battery chemistry which provides a 16% mass reduction compared to lithium-ion cells. In this study, two powertrain topologies are investigated using the dual-battery hybrid energy storage system (HESS). The vehicles are modeled in MATLAB/Simulink and a combined plant-controller optimization study is conducted. The results quantify the energy use benefit from selecting certain sizes of Li-Si packs, and find the Pareto front which characterizes the trade-off between energy use and cost of the emerging battery cell technology.
机译:本文介绍了电动汽车(EV)原型的设计和优化,该原型将作为研究人员和行业之间大型合作项目的一部分而构建。目标是开发可一次充电行驶600公里的远程电动汽车。为了使电池质量合理,建议的设计将锂离子(Li-ion)电池与锂硅(Li-Si)电池相结合,这是一种新兴的电池化学物质,与锂离子电池相比,质量降低了16%。在这项研究中,使用双电池混合储能系统(HESS)研究了两种动力总成拓扑。在MATLAB / Simulink中对车辆进行建模,并进行了组合的工厂-控制器优化研究。结果量化了通过选择特定尺寸的锂硅电池组所产生的能源使用收益,并找到了Pareto前沿,该特征表征了能源消耗与新兴电池技术之间的权衡。

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