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I. A Simplified Model For Determining Capacity Usage And Battery Size For Hybrid And Plug-in Hybrid Electric Vehicles

机译:I.确定混合动力和插电式混合动力汽车容量使用和电池大小的简化模型

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We develop a simplified model to examine the effect of the shape and magnitude of the battery pulse-power capability on capacity usage and battery size. The simplified model expresses the capacity usage and a dimensionless battery area in terms of a dimensionless energy-to-power ratio and a parameter that characterizes the shape of the pulse-power capability. We also present dimensional results that show how the capacity usage depends on the equivalent-electric range and separator area, and how the battery area depends on the equivalent-electric range. Key results include the presence of a Langmuir-like relationship between the capacity usage and the dimensionless energy-to-power ratio, and a linear relationship between the dimensionless energy-to-power ratio and a dimensionless area, with a slope and offset that depend on the shape of the pulse-power capability. We also found that a flat pulse-power capability curve increases capacity usage and decreases battery size, and that two important parameters for battery design are (U- V_(min))V_(min)/R, which reflects the maximum power capability, and Q, which reflects the battery energy. The results and analysis contained herein are used to help interpret the results from a combined battery and vehicle model, presented in a companion paper.
机译:我们开发了一个简化的模型来检查电池脉冲功率功能的形状和大小对容量使用情况和电池大小的影响。简化模型通过无量纲的能量-功率比和表征脉冲功率能力形状的参数来表示容量使用情况和无量纲的电池面积。我们还提供了尺寸结果,这些结果表明容量使用情况如何取决于等效电范围和隔板面积,以及电池面积如何取决于等效电范围。关键结果包括容量使用量与无量纲能量/功率比之间存在类似Langmuir的关系,以及无量纲能量与功率比与无量纲区域之间的线性关系,其斜率和偏移量取决于在脉冲功率能力的形状上。我们还发现平坦的脉冲功率能力曲线会增加容量使用量并减小电池尺寸,并且电池设计的两个重要参数是(U- V_(min))V_(min)/ R,它反映了最大功率能力, Q ,反映电池电量。本文包含的结果和分析用于帮助解释随附的电池和车辆模型的组合结果。

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