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Analysis of Multi-Cell Li-ion configurations with dissimilar SoC for Battery Swap Application

机译:不同SOC的多电池锂离子配置分析电池交换应用

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Battery storage plays a key role in maintaining balance of electrical energy between source and loads. Lithium-ion based battery technology is being preferred in the present day due to its higher energy density and smaller size. In general, battery applications require many individual cells to be connected in series-parallel combination to realize a complete storage system. In this work, the impact of connecting cells having dissimilar state-of-charge (SOC) in a multi-cell configuration is presented using simulation-based analysis. Different combination of multi-cell configurations have been simulated to investigate impact of dissimilar batteries. The purpose of the study is to explore the risks associated with replacement of individual cells in a multi-cell configuration e.g. battery swap stations.
机译:电池存储在维持源和负载之间的电能平衡方面起着关键作用。由于其较高的能量密度和更小的尺寸,本典锂离子基电池技术是优选的。通常,电池应用程序需要许多单独的单元格串联组合以实现完整的存储系统。在这项工作中,使用基于模拟的分析给出了在多电池配置中具有不同电荷(SOC)的连接电池的影响。已经模拟了多电池配置的不同组合以研究不同电池的影响。该研究的目的是探讨与多电池配置中的单个细胞相关联的风险,例如,电池交换站。

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