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首页> 外文期刊>Journal of power sources >Cycle Life Evaluation Of 3 Ah Li_xmn_2o_4-based Lithium-ion Secondary Cells For Low-earth-orbit Satellites I. Full Cell Results
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Cycle Life Evaluation Of 3 Ah Li_xmn_2o_4-based Lithium-ion Secondary Cells For Low-earth-orbit Satellites I. Full Cell Results

机译:低地球轨道卫星的3 Ah Li_xmn_2o_4基锂离子二次电池的循环寿命评估I.全电池结果

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摘要

Lithium-ion batteries are a candidate for the energy storage system onboard low-earth-orbit satellites. Cycle life performance under both orbital and terrestrial conditions must be investigated in order to evaluate any inadvertent effects due to the former and the validity of the latter, with a successful comparison allowing for the extension of terrestrial experimental matrices in order to identify the effects of ageing. The orbital performance of Li_xMn_2O_4-based pouch cells onboard the microsatellite REIMEI was monitored and compared with terrestrial experiments, with the cells found to be unaffected by orbital conditions. A lifetime matrix of different cycling depths-of-discharge (DODs: 0,20,40%) and temperatures (25, 45 ℃) was undertaken with periodic reference performance tests. A decrease in both the cell end-of-discharge cycling voltage and capacity was accelerated by both higher temperatures and larger DODs. Impedance spectra measured for all ageing conditions indicated that the increase was small, manifested in a state-of-charge dependent increase of the high-frequency semi-circle and a noticeable increase in the high-frequency real axis intercept. An evaluation of the change of both the resistance and capacity of 3 Ah cells led to the development of a potential prognostic state-of-health indicator. The use of elevated temperatures to accelerate cell ageing was validated.
机译:锂离子电池是低地球轨道卫星上能量存储系统的候选者。必须研究在轨道和地面条件下的循环寿命性能,以评估由于前者和后者的有效性而引起的任何意外影响,并进行成功的比较,以扩展地面实验矩阵,从而确定衰老的影响。监测微卫星REIMEI上基于Li_xMn_2O_4的袋状细胞的轨道性能,并将其与地面实验进行比较,发现这些细胞不受轨道条件的影响。通过周期性的参考性能测试,得出了不同循环放电深度(DOD:0,20,40%)和温度(25、45℃)的寿命矩阵。较高的温度和较大的DOD会加速电池放电终止循环电压和容量的降低。在所有老化条件下测量的阻抗谱表明,该增加很小,表现为取决于高频半圆的荷电状态的增加以及高频实轴截距的显着增加。对3 Ah细胞的耐药性和容量变化的评估导致了潜在的预后健康状态指标的发展。已验证了使用高温加速细胞老化。

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