电池(电)
健康状况
电池容量
荷电状态
航程(航空)
部分电荷
锂(药物)
局部放电
锂离子电池
估计
计算机科学
可靠性工程
电压
材料科学
电荷(物理)
工程类
电气工程
功率(物理)
热力学
医学
复合材料
系统工程
内分泌学
物理
量子力学
作者
Jian Wang,Lijun Zhu,Xiaoyu Liu,Yutao Wang,Lujun Wang
摘要
Abstract Employed extensively for lithium-ion battery health assessment and capacity estimation, incremental capacity analysis (ICA) traditionally requires substantial time investment under standard charge and discharge conditions. However, in practical usage, Li-ion batteries rarely undergo full cycles. This study introduces aging temperature cycles within different partial intervals of the battery, integrating local ICA curves, peak range analysis, and incremental slope (IS) as an auxiliary feature. The extracted partial incremental capacity curves serve as features for state of health (SOH) estimation. The proposed temperature-rate-based SOH estimation method relies on a mechanistic function, analyzing relationships between temperature, different partial intervals, aging rate, and aging. Experimental tests on FCB21700 batteries demonstrate accurate SOH estimation using only partial charge curves, with an average error below 2.82%. By manipulating charging and discharging ranges, the method significantly extends battery lifespan, offering promising widespread applications.
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