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Electrical circuit models for performance modeling of Lithium-Sulfur batteries

机译:用于锂 - 硫电池性能建模的电路模型

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摘要

Energy storage technologies such as Lithium-ion (Li-ion) batteries are widely used in the present effort to move towards more ecological solutions in sectors like transportation or renewable-energy integration. However, today's Li-ion batteries are reaching their limits and not all demands of the industry are met yet. Therefore, researchers focus on alternative battery chemistries as Lithium-Sulfur (Li-S), which have a huge potential due to their high theoretical specific capacity (approx. 1675 Ah/kg) and theoretical energy density of almost 2600 Wh/kg. To analyze the suitability of this new emerging technology for various applications, there is a need for Li-S battery performance model; however, developing such models represents a challenging task due to batteries' complex ongoing chemical reactions. Therefore, the literature review was performed to summarize electrical circuit models (ECMs) used for modeling the performance behavior of Li-S batteries. The studied Li-S pouch cell was tested in the laboratory in order to parametrize four basic ECM topologies. These topologies were compared by analyzing their voltage estimation accuracy values, which were obtained for different battery current profiles. Based on these results, the 3 R-C ECM was chosen and the Li-S battery cell discharging performance model with current dependent parameters was derived and validated.
机译:诸如锂离子(Li-ion)电池之类的储能技术在当前的努力中被广泛使用,以朝着交通或可再生能源整合等领域寻求更多的生态解决方案。但是,当今的锂离子电池已达到极限,并且尚未满足行业的所有需求。因此,研究人员专注于锂-硫(Li-S)替代电池化学,由于其理论比容量高(约1675 Ah / kg)和理论能量密度接近2600 Wh / kg,因此具有巨大的潜力。为了分析这种新兴技术在各种应用中的适用性,需要一种Li-S电池性能模型。然而,由于电池复杂的持续化学反应,开发这样的模型代表了一项艰巨的任务。因此,进行了文献综述以总结用于建模Li-S电池性能行为的电路模型(ECM)。在实验室中测试了所研究的Li-S袋式电池,以参数化四种基本ECM拓扑结构。通过分析它们的电压估算精度值来比较这些拓扑,这些电压估算精度值是针对不同的电池电流曲线而获得的。基于这些结果,选择了3 R-C ECM,并推导并验证了具有电流相关参数的Li-S电池放电性能模型。

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