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首页> 外文期刊>International journal of energy research >Origins and accommodation of cell variations in Li-ion battery pack modeling
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Origins and accommodation of cell variations in Li-ion battery pack modeling

机译:锂离子电池组建模中电池变化的起源和适应

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Rechargeable battery industry will see significant growth in the use of battery systems for portable devices and power electronics, renewable energy storage, power systems for transportation, and telecom backup power applications. Despite such promising market sentiment, the battery system management remains as a challenging issue to be resolved in order to provide a safe and reliable power and energy storage system. Here we report advancement in the battery management approach by providing a solution to analyze battery performance variations in a lot of batteries produced from the same manufacturing process. A lot of 100 Li-ion cells were analyzed in order to quantify the inherent cell variations associated with cell manufacturing process and test protocol. Both statistical and electrochemical analyses were used to characterize and quantify the capacity variations among the cells along with other parameters that can be readily derived from the test results. Information extracted from a minimal testing of the cells in the lot and more intensive characterizations on a few cells including one as the nominal sample cell allows the establishment of a single cell model (SCM), based on a generic equivalent circuit, with high accuracy in predicting cell performance. The analyses also permit a carefully crafted logic development of how to separate the origins that cause the cell variations in performance. Such separation of the attributes enable a proper tuning of the cell parameters in the model, which allows the accommodation of cell variations in a battery pack model to handle most of the imbalance issues. A careful validation of the SCM to predict performance of any arbitrary cell in the tot with high accuracy was demonstrated.
机译:充电电池行业将在便携式设备和电力电子设备,可再生能源存储,交通运输系统以及电信备用电源应用中使用电池系统,并获得显着增长。尽管市场前景如此乐观,但是电池系统管理仍然是要解决的挑战性问题,以提供安全可靠的功率和能量存储系统。在这里,我们通过提供一种解决方案来分析同一制造过程中生产的许多电池的电池性能变化,从而报告了电池管理方法的进步。为了量化与电池制造过程和测试协议相关的固有电池变化,分析了100个锂离子电池。统计分析和电化学分析均用于表征和量化电池之间的容量变化以及可从测试结果中轻松得出的其他参数。从对电池中的电池进行最少的测试以及对几个电池进行更深入的表征(包括一个作为标称样本电池)进行更深入的表征中提取的信息,可以基于通用等效电路建立单电池模型(SCM),并具有很高的精度。预测电池性能。这些分析还允许进行精心设计的逻辑开发,以了解如何分离导致单元性能变化的起源。属性的这种分离使得能够适当调整模型中的电池单元参数,这允许容纳电池组模型中的电池单元变化以处理大多数不平衡问题。演示了对SCM的仔细验证,以预测高精度的小孩中任意单元的性能。

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