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Residual Capacity Estimation of Stationary Lithium-ion Secondary Cells in Telecommunications Systems Using a Brief Discharge

机译:简要放电的电信系统固定锂离子二次电池的剩余容量估计

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Lithium-ion batteries are expected to contribute to miniaturizing power systems and prolonging backup times in telecommunications systems. From the viewpoint of maintenance, checking battery conditions automatically is desirable after the deployment of lithium-ion batteries to telecommunications systems. Estimating the residual capacity of backup batteries is one of our major concerns in maintaining them. To do this, we propose discharging lithium-ion batteries to an actual load for a short duration, measuring the voltages in this discharge, and estimating the capacity using the correlations between the voltages and residual capacities. We studied the fundamental correlations between the voltages during discharge and the residual capacities using trickle-charged single cells and a float-charged 14-cell series-connected battery in high-temperature acceleration tests. We found good correlations between the voltages and residual capacities in both the single cells and the battery. These correlations may be useful for estimating the residual capacities of float-charged lithium-ion batteries using brief discharges into actual loads.
机译:预计锂离子电池将有助于小型化电力系统和电信系统中的备用时间。从维护的角度来看,在将锂离子电池展开到电信系统之后,自动检查电池条件。估算备用电池的剩余容量是我们维护它们的主要问题之一。为此,我们将锂离子电池提出到实际负载的短时间,测量该放电中的电压,并使用电压与残余容量之间的相关性估计该容量。我们在高温加速试验中研究了放电期间的电压和使用涓流的14个单元串联电池的电压和残余容量之间的基本相关性。我们在单个电池和电池中的电压和残余容量之间发现了良好的相关性。这些相关性可用于估计使用简要排出到实际负载中的浮动电荷的锂离子电池的残余能力。

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