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Self-discharge characteristics and performance degradation of Ni-MH batteries for storage applications

机译:用于存储应用的镍氢电池的自放电特性和性能下降

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The needs for onboard energy storage are practically dependent on the Ni-MH and Li-ion battery packs, because these two power-assisting systems have features of proper energy density, longer cycle lifetime, quick charge acceptance, and proper operating windows for both voltage and temperature. In particular, the Ni-MH power system has a proper tolerance mechanism for overcharge and overdischarge, a lower cost for battery pack maintenance, and a slightly longer cycle lifetime profile. We studied the self-discharge characteristics, state-of-health, state-of-charge, and energy efficiencies at various charge input levels. The end-of-voltages during charge and discharge were evaluated for the NiMH storage batteries. The impedance measurements and data analysis have also been conducted for equivalent circuit simulations. The performance deterioration and capacity decay are fundamentally analyzed and discussed in details, including electrode side-reactions, structure degradations, separator weakening, and level changes of electrolyte saturation in the battery. Further battery quality enhancement through cycle duration improvement for onboard energy storage potentially provides more suitable power and energy delivery in order to obtain higher efficiency, save more fuels, and reduce CO_2, SO_2, and NO_x emissions.
机译:车载能量存储的需求实际上取决于镍氢和锂离子电池组,因为这两个功率辅助系统具有合适的能量密度,更长的循环寿命,快速的充电接受以及合适的两个电压工作窗口的特点和温度。尤其是,Ni-MH电源系统具有适当的过充和过放容差机制,较低的电池组维护成本以及更长的使用寿命。我们研究了各种充电输入水平下的自放电特性,健康状态,充电状态和能效。对NiMH蓄电池评估了充电和放电期间的电压终止。还进行了等效电路仿真的阻抗测量和数据分析。从根本上分析并详细讨论了性能下降和容量下降的问题,包括电极副反应,结构退化,隔膜弱化以及电池中电解质饱和度的水平变化。通过提高循环持续时间来改善车载电池储能的电池质量,可能会提供更合适的功率和能量输送,从而获得更高的效率,节省更多的燃料并减少CO_2,SO_2和NO_x的排放。

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