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Investigation of Hybrid Battery/Ultracapacitor Electrode Customization for Energy Storage Applications With Different Energy and Power Requirements Using HPPC Cycling

机译:使用HPPC循环研究具有不同能量和功率要求的储能应用中的混合电池/超级电容器电极定制研究

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This article explores hybrid energy storage devices in which an individual electrode is composed of a mixture of the active materials used in lithium-ion batteries and ultracapacitors, allowing them to exhibit characteristics of both device types. In order to explore the breadth of options between a pure battery electrode and a pure ultracapacitor electrode, seven different electrode compositions containing mixtures of lithium iron phosphate (LiFePO4) and activated carbon have been investigated. The hybrid electrodes have been implemented in an aqueous lithium sulfate electrolyte with single-electrode measurements using a reference electrode. The hybrid pulse power characterization (HPPC) test profile has been employed to characterize the energy and power capability of each electrode composition. An approach for converting single-electrode cycling results to full cell predictions suitable for the HPPC analysis procedure is presented. By executing this procedure, battery scale factors representing estimates of the quantity of active material required to achieve a set of energy storage target requirements have been calculated. Models of full 18650-format hybrid cells are developed to extend results to optimize a tailored energy storage system on the basis of total cell mass and volume. These results show that the required amount of active materials, total mass, or total volume of an energy storage system can be minimized for a given application by using a hybrid electrode and adjusting the constituent fraction of battery and ultracapacitor materials.
机译:本文探讨了混合式能量存储设备,其中单个电极由锂离子电池和超级电容器中使用的活性材料的混合物组成,从而使它们具有两种设备类型的特性。为了探索纯电池电极和纯超级电容器电极之间的选择范围,已研究了包含磷酸铁锂(LiFePO4)和活性炭的混合物的七个不同电极组合物。混合电极已在硫酸锂水溶液中使用参考电极进行单电极测量。混合脉冲功率表征(HPPC)测试配置文件已用于表征每个电极组合物的能量和功率容量。提出了一种将单电极循环结果转换为适用于HPPC分析程序的全细胞预测的方法。通过执行此过程,已计算出电池比例系数,该比例系数代表了实现一组能量存储目标要求所需的活性物质数量的估算值。开发了完整的18650格式混合电池的模型,以扩展结果,以基于总电池质量和体积优化量身定制的储能系统。这些结果表明,对于给定的应用,通过使用混合电极并调节电池和超级电容器材料的组成比例,可以使所需的活性材料量,能量存储系统的总质量或总体积最小化。

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