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Life prediction for valve regulated lead acid batteries from early current/voltage data

机译:根据早期电流/电压数据预测阀控式铅酸蓄电池的寿命

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Summary form only given. As valve regulated lead-acid (VRLA) batteries age, they demonstrate a predictable drop in end-of-charge voltage and concomitant rise in end-of-charge temperature. This is attributed to the increasing dominance of the oxygen recombination cycle, which results from the negative plate not being fully charged over several cycles. Unchecked, the battery at its end of life experiences a collapse in end of charge voltage, and may even go into thermal runaway. Once the end-of-charge voltage begins to crater, the battery life expectancy is short. Usage of the current interrupt (CI) technique forestalls the inevitable end of life. Nonetheless, there remains the difficult issue of finding an early predictor of battery life. This issue was studied under ALABC Project No. B-007.2. Data from two different algorithms, the Optima-recommended "normal charge" consisting of a constant voltage with a constant current overcharge (CV/CC), and a current interrupt (CI) charge were evaluated for signs of an early life predictor. An interesting pattern of an increase then drop in end-of-charge voltage accompanied by a surge then leveling out of capacity was identified 15% to 20% into the cycle life for both CV/CC and CI algorithms. The pattern proved predictive for the CV/CC cycle lives of several batteries, while the voltage surge as a predictor of CI cycle life depended completely on the specific algorithm. Characterization was also hampered by limited replicates. It is not known why this early voltage behavior occurs.
机译:仅提供摘要表格。随着阀控式铅酸(VRLA)电池的老化,它们显示出可预测的充电终止电压下降和随之而来的充电终止温度升高。这归因于氧复合循环的支配性增加,这是由于负极板在数个循环中未充满电而导致的。未经检查,电池寿命终止时充电电压会崩溃,甚至可能会失控。一旦充电终止电压开始下降,电池寿命就会很短。当前中断(CI)技术的使用可以避免不可避免的使用寿命。尽管如此,仍然存在难以找到电池寿命的早期预测指标的难题。在ALABC项目编号B-070.2下研究了此问题。对来自两种不同算法的数据进行了评估,这些数据是Optima推荐的“正常充电”(包括恒定电压和恒定电流过充电(CV / CC))以及电流中断(CI)充电的预测寿命的迹象。对于CV / CC和CI算法,在循环寿命中发现了一种有趣的模式,即充电结束电压先升高然后降低,再伴随电涌然后达到容量失衡,该现象占15%至20%。该模式被证明可预测多个电池的CV / CC循环寿命,而电压浪涌作为CI循环寿命的预测指标则完全取决于特定的算法。有限的重复也阻碍了表征。尚不知道为什么会出现这种早期的电压行为。

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