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Quantitative Evaluation of LiFePO Battery Cycle Life Improvement Using Ultracapacitors

机译:使用超级电容器对LiFePO电池循环寿命的定量评估

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摘要

This letter develops a systematic approach to quantitatively evaluate and compare LiFePO battery cycle life improvement using ultracapacitors (UCs). The impact of UC sizing on temperature rise, capacity loss, and power fade under a real dynamic load profile is included for a comprehensive discussion and evaluation. It is found that the cycle-related battery capacity losses are reduced by 28.6% (C/3) and 29.0% (1C) using the optimized number of UCs, while the reductions are 36.3% (C/3) and 39.3% (1C) assuming an infinite number of UCs. The reductions on the power fade are 23.6% and 57.3% for the cases with optimized and infinite numbers of UCs, respectively. The reductions on temperature rise, 1.38 C and 1.93 C, in the two cases are also observed when discharging from 80% to 30% state of charge in one test cycle. The developed approach in the letter could serve as a general procedure to evaluate the cycle life improvement for other types of batteries when combined with UCs.
机译:这封信提出了一种系统的方法来定量评估和比较使用超级电容器(UCs)改善LiFePO电池循环寿命。包括了UC尺寸对实际动态负载曲线下的温升,容量损失和功率衰减的影响,以进行全面的讨论和评估。发现使用优化的UC数量,与循环相关的电池容量损失减少了28.6%(C / 3)和29.0%(1C),而减少的分别为36.3%(C / 3)和39.3%(1C) ),假设无数个UC。对于优化数量和无限数量的UC,功率衰减的降低分别为23.6%和57.3%。当在一个测试周期中从80%的充电状态放电到30%的充电状态时,两种情况下的温度升高分别降低1.38°C和1.93°C。信中开发的方法可以用作评估与UC组合使用的其他类型电池循环寿命改进的一般程序。

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