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Impact of Battery Ageing on an Electric Vehicle Powertrain Optimisation

机译:电池老化对电动汽车动力总成优化的影响

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摘要

An electric vehicle’s battery is its most expensive component, and it cannot be charged and discharged indefinitely. This affects a consumer vehicle’s end-user value. Ageing is tolerated as an unwanted operational side-effect; manufacturers have little control over it. Recent publications have considered trade-offs between efficiency and ageing in plug-in hybrids (PHEVs) but there is no equivalent literature for pure EVs. For PHEVs, battery ageing has been modelled by translating current demands into chemical degradation. Given such models it is possible to produce similar trade-offs for EVs. We consider the effects of varying battery size and introducing a parallel supercapacitor pack. (Supercapacitors can smooth current demands, but their weight and electronics reduce economy.) We extend existing EV optimisation techniques to include battery ageing, illustrated with vehicle case studies. We comment on the applicability to similar EV problems and identify where additional research is needed to improve on our assumptions.
机译:电动汽车的电池是其最昂贵的组件,并且不能无限期地充电和放电。这会影响消费车辆的最终用户价值。容忍老化是一种有害的操作副作用;制造商对此几乎没有控制权。最近的出版物已经考虑了插电式混合动力车(PHEV)在效率和老化之间的权衡,但是没有纯电动汽车的等效文献。对于插电式混合动力汽车,已经通过将电流需求转化为化学降解来模拟电池老化。有了这样的模型,就有可能为电动汽车产生类似的权衡。我们考虑了改变电池尺寸并引入并联超级电容器组的影响。 (超级电容器可以缓解电流需求,但是它们的重量和电子设备会降低经济性。)我们将现有的电动汽车优化技术扩展到包括电池老化,并通过车辆案例研究进行说明。我们评论了类似电动汽车问题的适用性,并确定了需要进一步研究以改善我们的假设的地方。

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