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Capacity loss in rechargeable lithium cells during cycle life testing: The importance of determining state-of-charge

机译:循环寿命测试期间可充电锂电池的容量损失:确定充电状态的重要性

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Determining state-of-charge (SoC) in a battery has been an important subject for the industry for decades. Despite significant efforts in the past focusing on methodologies to accurately estimate SoC in a battery, the fundamental understanding of the SoC issue has not been clear, at least in the industry where testing, control, and operation are concerned. Recently, we have been working on developing reliable techniques to identify capacity loss mechanism in rechargeable lithium batteries and to quantify contributions to capacity loss from different origins. That prompted us to re-visit the SoC issue. Strictly speaking, SoC is a static thermodynamic property of battery chemistry, which should be determined at equilibrium. On the other hand, cell capacity is a quantity of practical interest often determined by kinetics; thus, it is rate dependent. We conducted a few experiments to illustrate the accurate estimate of SoC through proper measurements. We also explained the proper correlation between SoC and rate capacity. A better understanding of the charge and discharge behavior in a battery under different rates in relation to the SoC is therefore derived.
机译:数十年来,确定电池中的充电状态(SoC)一直是该行业的重要课题。尽管过去在集中精力以准确估算电池中SoC的方法方面做出了巨大努力,但至少在涉及测试,控制和操作的行业中,尚不清楚SoC问题的基本理解。最近,我们一直在努力开发可靠的技术,以识别可充电锂电池的容量损失机制,并量化不同来源对容量损失的贡献。这促使我们重新审视SoC问题。严格来说,SoC是电池化学性质的静态热力学性质,应在平衡时确定。另一方面,电池容量通常是由动力学决定的实用价值。因此,它取决于速率。我们进行了一些实验,以通过适当的测量来说明SoC的准确估算。我们还解释了SoC与速率容量之间的适当相关性。因此,可以更好地理解电池在不同速率下相对于SoC的充电和放电行为。

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