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On the design of a direct cell coupled hybrid energy storage system for plug-in hybrid electric vehicles

机译:插电式混合动力汽车直接电池耦合混合储能系统的设计

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A pack design methodology is proposed to meet USABC PHEV-40 performance targets using battery and ultracapacitor energy storage elements in direct coupled topologies. Simulated responses of temperature dependent power capability and cold cranking requirements are embedded in the hybrid pack analysis and design process. A case study based on an 18650 NMC Lithium-ion battery cell and a non-aqueous symmetric ultracapacitor is presented to investigate replacement tradeoffs between the two energy storage components. Among the performance metrics in the case study, ultracapacitors give the greatest improvement for short term two second power. However, the 10-second discharge power requirement is shown to be a limiting design factor to which the replacement of battery cells with ultracapacitors is less effective.
机译:提出了一种电池组设计方法,以在直接耦合拓扑中使用电池和超级电容器储能元件来满足USABC PHEV-40的性能目标。温度相关的功率能力和冷启动要求的模拟响应被嵌入到混合动力包分析和设计过程中。提出了一个基于18650 NMC锂离子电池和非水对称超级电容器的案例研究,以研究这两个储能组件之间的替代权衡。在该案例研究的性能指标中,超级电容器在短期内具有两秒钟的功率方面具有最大的改进。但是,显示10秒放电功率要求是一个限制设计因素,因此用超级电容器替代电池单元的效果较差。

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