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A study of cell-to-cell interactions and degradation in parallel strings : implications for the battery management system

机译:电池串之间的电池间相互作用和降解研究:对电池管理系统的影响

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摘要

Vehicle battery systems are usually designed with a high number of cells connected in parallel to meet the stringent requirements of power and energy. The self-balancing characteristic of parallel cells allows a battery management system (BMS) to approximate the cells as one equivalent cell with a single state of health (SoH) value, estimated either as capacity fade (SoHE) or resistance increase (SoHP). A single SoH value is however not applicable if the initial SoH of each cell is different, which can occur when cell properties change due to inconsistent manufacturing processes or in-homogeneous operating environments. As such this work quantifies the convergence of SoHE and SoHP due to initial differences in cell SoH and examines the convergence factors. Four 3 Ah 18650 cells connected in parallel at 25 °C are aged by charging and discharging for 500 cycles. For an initial SoHE difference of 40% and SoHP difference of 45%, SoHE converge to 10% and SoHP to 30% by the end of the experiment. From this, a strong linear correlation between ΔSoHE and ΔSoHP is also observed. The results therefore imply that a BMS should consider a calibration strategy to accurately estimate the SoH of parallel cells until convergence is reached.udud
机译:车辆电池系统通常设计为具有大量并联连接的电池,以满足功率和能量的严格要求。并行电池的自平衡特性使电池管理系统(BMS)可以将电池近似为一个具有单个健康状态(SoH)值的等效电池,并通过容量衰减(SoHE)或电阻增加(SoHP)进行估算。但是,如果每个单元的初始SoH不同,则单个SoH值将不适用,当单元属性由于制造过程不一致或操作环境不均匀而发生变化时,可能会发生这种情况。因此,这项工作量化了由于细胞SoH初始差异而导致的SoHE和SoHP的收敛,并检查了收敛因子。在25°C下并联连接的4个3 Ah 18650电池通过充放电500个循环而老化。对于初始SoHE差异40%和SoHP差异45%,到实验结束时,SoHE收敛到10%,SoHP收敛到30%。由此,还观察到ΔSoHE和ΔSoHP之间的强线性相关性。因此,结果表明BMS应该考虑一种校准策略,以准确估计并行单元的SoH,直到达到收敛为止。

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